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Turning the corner from observation to intervention in human genetics
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作者 David L.Nelson 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2018年第2期57-59,共3页
In the early 1990s,shortly after we identified the genetic defect in FMR1 that results in fragile X syndrome(Verkerk et al.,1991),I attended a conference sponsored by the US National Fragile X Foundation.This biannu... In the early 1990s,shortly after we identified the genetic defect in FMR1 that results in fragile X syndrome(Verkerk et al.,1991),I attended a conference sponsored by the US National Fragile X Foundation.This biannual meeting mixes families and scientists in a very productive and enlightening way. 展开更多
关键词 Turning the corner from observation to intervention in human genetics
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Effects of P301L-TAU on post-translational modifications of microtubules in human iPSC-derived cortical neurons and TAU transgenic mice
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作者 Mohamed Aghyad Al Kabbani Christoph Köhler Hans Zempel 《Neural Regeneration Research》 SCIE CAS 2025年第8期2348-2360,共13页
TAU is a microtubule-associated protein that promotes microtubule assembly and stability in the axon.TAU is missorted and aggregated in an array of diseases known as tauopathies.Microtubules are essential for neuronal... TAU is a microtubule-associated protein that promotes microtubule assembly and stability in the axon.TAU is missorted and aggregated in an array of diseases known as tauopathies.Microtubules are essential for neuronal function and regulated via a complex set of post-translational modifications,changes of which affect microtubule stability and dynamics,microtubule interaction with other proteins and cellular structures,and mediate recruitment of microtubule-severing enzymes.As impairment of microtubule dynamics causes neuronal dysfunction,we hypothesize cognitive impairment in human disease to be impacted by impairment of microtubule dynamics.We therefore aimed to study the effects of a disease-causing mutation of TAU(P301L)on the levels and localization of microtubule post-translational modifications indicative of microtubule stability and dynamics,to assess whether P301L-TAU causes stability-changing modifications to microtubules.To investigate TAU localization,phosphorylation,and effects on tubulin post-translational modifications,we expressed wild-type or P301L-TAU in human MAPT-KO induced pluripotent stem cell-derived neurons(i Neurons)and studied TAU in neurons in the hippocampus of mice transgenic for human P301L-TAU(p R5 mice).Human neurons expressing the longest TAU isoform(2N4R)with the P301L mutation showed increased TAU phosphorylation at the AT8,but not the p-Ser-262 epitope,and increased polyglutamylation and acetylation of microtubules compared with endogenous TAU-expressing neurons.P301L-TAU showed pronounced somatodendritic presence,but also successful axonal enrichment and a similar axodendritic distribution comparable to exogenously expressed 2N4R-wildtype-TAU.P301L-TAU-expressing hippocampal neurons in transgenic mice showed prominent missorting and tauopathy-typical AT8-phosphorylation of TAU and increased polyglutamylation,but reduced acetylation,of microtubules compared with non-transgenic littermates.In sum,P301L-TAU results in changes in microtubule PTMs,suggestive of impairment of microtubule stability.This is accompanied by missorting and aggregation of TAU in mice but not in i Neurons.Microtubule PTMs/impairment may be of key importance in tauopathies. 展开更多
关键词 human induced pluripotent stem cell MICROTUBULES P301L pR5 mice TAU TAUOPATHY tubulin code
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Advancing pediatric cancer diagnosis: the promise of single-cell liquid biopsy for early detection and surveillance
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作者 Pavithra Ayyadurai Chinnasamy Ragavendran 《Biomedical Engineering Communications》 2026年第1期13-25,共13页
Pediatric cancers are particularly significant due to their uncommon occurrence in children,driven by a variety of underlying factors.Because of their distinct molecular and genetic makeup,which makes early detection ... Pediatric cancers are particularly significant due to their uncommon occurrence in children,driven by a variety of underlying factors.Because of their distinct molecular and genetic makeup,which makes early detection challenging,they are linked to problems.Diagnostic methods like imaging and tissue biopsy are only effective when the tumor has reached a size that can be identified.The liquid biopsy technique,the least intrusive and most convenient diagnostic method,is the subject of this review.It focuses on the significance of single cell analysis in examining uncommon cancer types.The many biomarkers found in bodily fluids and the cancer types they are linked to in children have been assessed,as has the potential route towards early detection and cancer recurrence forecasting.Combining the single cell liquid biopsy with the newest technologies,such as computational and multi-omics approaches,which have improved the efficiency of processing massive and unique genetic data,appears promising.This article discusses on a number of case reports for uncommon pediatric malignancies,such as Neuroblastoma,Medulloblastoma,Wilms Tumor,Rhabdomyosarcoma,Ewing Sarcoma,and Retinoblastoma,as well as their liquid biopsy profiles.Furthermore,the findings raise ethical questions regarding the therapeutic application of the technology as well as possible difficulties related to clinical translation.The likelihood that this single cell liquid biopsy will be clinically validated and eventually used as a routine diagnostic tool for uncommon pediatric cancers will rise with the realistic approach to sensitivity monitoring,specificity upgrading,and optimization. 展开更多
关键词 pediatric cancer single cell liquid biopsy biomarkers NEUROBLASTOMA MEDULLOBLASTOMA wilms tumor
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Roles of the Y chromosome genes in human cancers 被引量:10
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作者 Tatsuo Kido Yun-Fai Chris Lau 《Asian Journal of Andrology》 SCIE CAS CSCD 2015年第3期373-380,共8页
Male and female differ genetically by their respective sex chromosome composition, that is, XY as male and XX as female. Although both X and Y chromosomes evolved from the same ancestor pair of autosomes, the Y chromo... Male and female differ genetically by their respective sex chromosome composition, that is, XY as male and XX as female. Although both X and Y chromosomes evolved from the same ancestor pair of autosomes, the Y chromosome harbors male-specific genes, which play pivotal roles in male sex determination, germ cell differentiation, and masculinization of various tissues. Deletions or translocation of the sex-determining gene, SRY, from the Y chromosome causes disorders of sex development (previously termed as an intersex condition) with dysgenic gonads. Failure of gonadal development results not only in infertility, but also in increased risks of germ cell tumor (GCT), such as gonadoblastoma and various types of testicular GCT. Recent studies demonstrate that either loss of Y chromosome or ectopic expression of Y chromosome genes is closely associated with various male-biased diseases, including selected somatic cancers. These observations suggest that the Y-linked genes are involved in male health and diseases in more frequently than expected. Although only a small number of protein-coding genes are present in the male-specific region of Y chromosome, the impacts of Y chromosome genes on human diseases are still largely unknown, due to lack of in vivo models and differences between the Y chromosomes of human and rodents. In this review, we highlight the involvement of selected Y chromosome genes in cancer development in men. 展开更多
关键词 germ cell tumors RBMY Y-linked somatic cancers TSPY Y chromosome
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Recent progress in the genetics of generalized vitiligo 被引量:23
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作者 Richard A.Spritz 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2011年第7期271-278,共8页
Vitiligo is an acquired disease characterized principally by patchy depigmentation of skin and overlying hair. Generalized vitiligo (GV), the predominant form of the disorder, results from autoimmune loss of melanoc... Vitiligo is an acquired disease characterized principally by patchy depigmentation of skin and overlying hair. Generalized vitiligo (GV), the predominant form of the disorder, results from autoimmune loss of melanocytes from affected regions. GV is a "complex trait", inherited in a non-Mendelian polygenic, multifactorial manner. GV is epidemiologically associated with other autoimmune diseases, both in GV patients and in their close relatives, suggesting that shared genes underlie susceptibility to this group of diseases. Early candidate gene association studies yielded a few successes, such as PTPN22, but most such reports now appear to be false-positives. Subsequent genomewide linkage studies identified NLRP1 and XBP1, apparent true GV susceptibility genes involved in immune regulation, and recent genome-wide association studies (GWAS) of GV in Caucasian and Chinese populations have yielded a large number of additional validated GV susceptibility genes. Together, these genes highlight biological systems and pathways that reach from the immune cells to the melanocyte, and provide insights into both disease pathogenesis and potential new targets for both treatment and even prevention of GV and other autoimmune diseases in genetically susceptible individuals. 展开更多
关键词 VITILIGO Autoimmune disease GENE ASSOCIATION LINKAGE
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Constituents of the anti-asthma herbal formula ASHMI^(TM) synergistically inhibit IL-4 and IL-5 secretion by murine Th2 memory cells,and eotaxin by human lung fibroblasts in vitro 被引量:16
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作者 Bolleddula Jayaprakasam Nan Yang +4 位作者 Ming-Chun Wen Rong Wang Joseph Goldfarb Hugh Sampson Xiu-Min Li 《Journal of Integrative Medicine》 SCIE CAS CSCD 2013年第3期195-205,共11页
OBJECTIVE: Anti-asthma herbal medicine intervention (ASHMITM), a combination of three tradi- tional Chinese medicinal herbs developed in our laboratory, has demonstrated efficacy in both mouse models of allergic as... OBJECTIVE: Anti-asthma herbal medicine intervention (ASHMITM), a combination of three tradi- tional Chinese medicinal herbs developed in our laboratory, has demonstrated efficacy in both mouse models of allergic asthma, and a double-blind placebo-controlled clinical trial in patients with asthma. This study was designed to determine if the anti-inflammatory effects of individual herbal constituents of ASHMITM exhibited synergy. METHODS: Effects of ASHMI and its components aqueous extracts of Lingzhi (Ganoderma lucidum), Kushen (Sophora flavescens) and Gancao (Glycyrrhiza uralensis), on Th2 cytokine secretion by murine memory Th2 cells (D10.G4.1) and eotaxin-1 secretion by human lung fibroblast (HLF-1) cells were determined by measuring levels in culture supernatants by enzyme- linked immunosorbent assay. Potential synergistic effects were determined by computing interaction indices from concentration-effect curve parameters. RESULTS: Individual Lingzhi, Kushen and Gancao extracts and ASHMI (the combination of individual extracts) inhibited production of interleukin (IL)-4 and IL-5 by murine memory Th2 cells and eotaxin-1 production by HLF-1 cells. The mean 25%-inhibitory-concentration (IC2s) values (mg/mL) forASHMI, Lingzhi, Kushen and Gancao for IL-4 production were 30.9, 79.4, 123, and 64.6, respectively; for IL-5 production were 30.2, 263, 123.2 and 100, respectively; for eotaxin-1 were 13.2, 16.2, 30.2, and 25.1, respectively. The IC50values (mg/mL) for ASHMI, Lingzhi, Kushen and Gancao for IL-4 production were 158.5, 239.9, 446.7, and 281.8, respectively; for eotaxin-1 were 38.1, 33.1, 100, and 158.5, respectively. The interaction indices of ASHMI constituents at IC25 were 0.35 for IL-4, 0.21 for IL-5 and 0.59 for eotaxin-l. The interaction indices at IC^0 values were 0.50 for IL-4 and 0.62 for eotaxin-1 inhibition. Inhibition of IL-5 did not reach IC^0 values. All interaction indices were below 1 which indicated synergy. CONCLUSION: By comparing the interaction index values, we find that constituents in ASHMITM synergistically inhibited eotaxin-1 production as well as Th2 cytokine production. 展开更多
关键词 medicine Chinese traditional medicine herbal plant extracts anti-asthma herbal medicine intervention (ASHMI) anti-asthmatic agents chemokine CCL11 INTERLEUKIN-4 interleukin -5 in vitro
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Cancer epigenetics: a perspective on the role of DNA methylation in acquired endocrine resistance 被引量:6
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作者 Michael P. Trimarchi Mary Mouangsavanh Tim Hui-Ming 《Chinese Journal of Cancer》 SCIE CAS CSCD 北大核心 2011年第11期749-756,共8页
Epigenetic mechanisms, including DNA methylation, are responsible for determining and maintaining cell fate, stably differentiating the various tissues in our bodies. Increasing evidence shows that DNA methylation pla... Epigenetic mechanisms, including DNA methylation, are responsible for determining and maintaining cell fate, stably differentiating the various tissues in our bodies. Increasing evidence shows that DNA methylation plays a significant role in cancer, from the silencing of tumor suppressors to the activation of oncogenes and the promotion of metastasis. Recent studies also suggest a role for DNA methylation in drug resistance. This perspective article discusses how DNA methylation may contribute to the development of acquired endocrine resistance, with a focus on breast cancer. In addition, we discuss DNA methylome profiling and how recent developments in this field are shedding new light on the role of epigenetics in endocrine resistance. Hormone ablation is the therapy of choice for hormone-sensitive breast tumors, yet as many as 40% of patients inevitably relapse, and these hormone refractory tumors often have a poor prognosis. Epigenetic studies could provide DNA methylation biomarkers to predict and diagnose acquired resistance in response to treatment. Elucidation of epigenetic mechanisms may also lead to the development of new treatments that specifically target epigenetic abnormalities or vulnerabilities in cancer cells. Expectations must be tempered by the fact that epigenetic mechanisms of endocrine resistance remain poorly understood, and further study is required to better understand how altering epigenetic pathways with therapeutics can promote or inhibit endocrine resistance in different contexts. Going forward, DNA methylome profiling will become increasingly central to epigenetic research, heralding a network-based approach to epigenetics that promises to advance our understanding of the etiology of cancer in ways not previously possible. 展开更多
关键词 DNA甲基化作用 表观遗传学 内分泌 癌症 收购 甲基化分析 遗传机制 肿瘤抑制
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Proteomics and the genetics of sperm chromatin condensation 被引量:4
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作者 Rafael Oliva Judit Castillo 《Asian Journal of Andrology》 SCIE CAS CSCD 2011年第1期24-30,共7页
Spermatogenesis involves extremely marked cellular, genetic and chromatin changes resulting in the generation of the highly specialized sperm cell. Proteomics allows the identification of the proteins that compose the... Spermatogenesis involves extremely marked cellular, genetic and chromatin changes resulting in the generation of the highly specialized sperm cell. Proteomics allows the identification of the proteins that compose the spermatogenic cells and the study of their function. The recent developments in mass spectrometry (MS) have markedly increased the throughput to identify and to study the sperm proteins. Catalogs of thousands of testis and spermatozoan proteins in human and different model species are becoming available, setting up the basis for subsequent research, diagnostic applications and possibly the future development of specific treatments. The present review intends to summarize the key genetic and chromatin changes at the different stages of spermatogenesis and in the mature sperm cell and to comment on the presently available proteomic studies. 展开更多
关键词 EPIGENETIC IMPRINTING PROTAMINE PROTEOME SPERMATOZOA
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Pharmacogenetics in inflammatory bowel disease 被引量:3
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作者 Marie Pierik Paul Rutgeerts +1 位作者 Robert Vlietinck Severine Vermeire 《World Journal of Gastroenterology》 SCIE CAS CSCD 2006年第23期3657-3667,共11页
Pharmacogenetics is the study of the association between variability in drug response and (or) drug toxicity and polymorphisms in genes. The goal of this field of science is to adapt drugs to a patient's specific g... Pharmacogenetics is the study of the association between variability in drug response and (or) drug toxicity and polymorphisms in genes. The goal of this field of science is to adapt drugs to a patient's specific genetic background and therefore make them more efficacious and safe. In this article we describe the variants in genes that influence either the efficacy or toxicity of common drugs used in the treatment of inflammatory bowel diseases (IBD), ulcerative colitis (UC), and Crohn's disease (CD) including sulfasalazine and mesalazine, azathioprine (AZA) and 6-mercaptopurine (6-MP), methotrexate (MTX), glucocorticosteroids (CSs) and infliximab. Furthermore, difficulties with pharmacogenetic studies in general and more specifically in IBD are described. Although pharmacogenetics is a promising field that already contributed to a better understanding of some of the underlying mechanisms of action of drugs used in IBD, the only discovery translated until now into daily practice is the relation between thiopurine S-methyltransferase (TPMT) gene polymorphisms and hematological toxicity of thiopurine treatment. In the future it is necessary to organize studies in well characterized patient cohorts who have been uniformly treated and systematically evaluated in order to quantitate drug response more objectively. An effort should be made to collect genomic DNA from all patients enrolled in clinical drug trials after appropriate informed consent for pharmacogenetic studies. 展开更多
关键词 Inflammatory bowel disease Pharmaco-genetics Crohn's disease Ulcerative colitis
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hsa-mir-183 is frequently methylated and related to poor survival in human hepatocellular carcinoma 被引量:3
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作者 Sumadi Lukman Anwar Till Krech +7 位作者 Britta Hasemeier Elisa Schipper Nora Schweitzer Arndt Vogel Hans Kreipe Reena Buurman Britta Skawran Ulrich Lehmann 《World Journal of Gastroenterology》 SCIE CAS 2017年第9期1568-1575,共8页
To screen clinically relevant microRNAs (miRNAs) silenced by DNA methylation in human hepatocellular carcinoma (HCC).METHODSKnockdown of DNA methyltransferases (DNMTs) using siRNAs and miRNA profiling in HCC cell line... To screen clinically relevant microRNAs (miRNAs) silenced by DNA methylation in human hepatocellular carcinoma (HCC).METHODSKnockdown of DNA methyltransferases (DNMTs) using siRNAs and miRNA profiling in HCC cell lines were performed to identify DNA hypermethylation-mediated miRNA downregulation. Confirmation using individual quantitative real-time PCR (qRT-PCR) assays was then performed followed by DNA methylation quantification at the promoter of the miRNA genes. Quantification of DNA methylation and miRNA expression was then performed in primary HCC tumor samples and related with clinicopathological variables.RESULTSmiRNA profiling after DNMT knockdown in HCC cell lines revealed upregulation of miR-23, miR-25 and miR-183. After qRT-PCR confirmation and CpG island methylation quantification of these miRNAs in cell lines, further analysis in primary HCC specimens showed that hsa-miR-183 is hypermethylated in 30% of HCC (n = 40). Expression of mature miR-183 showed an inverse correlation with DNA methylation levels. In HCC cells, DNMT knockdown and 5-aza-2’-deoxycytidine treatment reduced methylation and stimulated expression of miR-183. In HCC patients, hypermethylation at hsa-miR-183 promoter significantly correlates with poor survival (log-rank test P = 0.03). DNA methylation analysis in healthy liver, benign liver tumors (hepatocellular adenoma and focal nodular hyperplasia) and their corresponding adjacent tissues showed absence of hypermethylation supporting the notion that aberrant methylation at hsa-miR-183 is specific for the malignant transformation of hepatocytes.CONCLUSIONOur data indicate that hypermethylation of hsa-miR-183 is a frequent event in HCC and potentially useful as a novel surrogate diagnostic and prognostic marker. 展开更多
关键词 hsa-miR-183 DNA methylation DNMT knockdown microRNA microarray
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Genetics of diabetes 被引量:3
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作者 Shiwali Goyal Jyoti Rani +1 位作者 Mohd Akbar Bhat Vanita Vanita 《World Journal of Diabetes》 SCIE 2023年第6期656-679,共24页
Diabetes mellitus is a complicated disease characterized by a complex interplay of genetic,epigenetic,and environmental variables.It is one of the world's fastestgrowing diseases,with 783 million adults expected t... Diabetes mellitus is a complicated disease characterized by a complex interplay of genetic,epigenetic,and environmental variables.It is one of the world's fastestgrowing diseases,with 783 million adults expected to be affected by 2045.Devastating macrovascular consequences(cerebrovascular disease,cardiovascular disease,and peripheral vascular disease)and microvascular complications(like retinopathy,nephropathy,and neuropathy)increase mortality,blindness,kidney failure,and overall quality of life in individuals with diabetes.Clinical risk factors and glycemic management alone cannot predict the development of vascular problems;multiple genetic investigations have revealed a clear hereditary component to both diabetes and its related complications.In the twenty-first century,technological advancements(genome-wide association studies,nextgeneration sequencing,and exome-sequencing)have led to the identification of genetic variants associated with diabetes,however,these variants can only explain a small proportion of the total heritability of the condition.In this review,we address some of the likely explanations for this"missing heritability",for diabetes such as the significance of uncommon variants,gene-environment interactions,and epigenetics.Current discoveries clinical value,management of diabetes,and future research directions are also discussed. 展开更多
关键词 Type 1 diabetes Type 2 diabetes Gestational diabetes mellitus Maturityonset diabetes of young Genome-wide association studies Common variants Rare variants
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Human sperm chromatin epigenetic potential: genomics, proteomics, and male infertility 被引量:3
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作者 ludit Castillo Josep Maria Estanyol +1 位作者 Josep Lluis Ballesca Rafael Oliva 《Asian Journal of Andrology》 SCIE CAS CSCD 2015年第4期601-609,共9页
The classical idea about the function of the mammalian sperm chromatin is that it serves to transmit a highly protected and transcriptionally inactive paternal genome, largely condensed by protamines, to the next gene... The classical idea about the function of the mammalian sperm chromatin is that it serves to transmit a highly protected and transcriptionally inactive paternal genome, largely condensed by protamines, to the next generation. In addition, recent sperm chromatin genome-wide dissection studies indicate the presence of a differential distribution of the genes and repetitive sequences in the protamine-condensed and histone-condensed sperm chromatin domains, which could be potentially involved in regulatory roles after fertilization. Interestingly, recent proteomic studies have shown that sperm chromatin contains many additional proteins, in addition to the abundant histones and protamines, with specific modifications and chromatin affinity features which are also delivered to the oocyte. Both gene and protein signatures seem to be altered in infertile patients and, as such, are consistent with the potential involvement of the sperm chromatin landscape in early embryo development. This present work reviews the available information on the composition of the human sperm chromatin and its epigenetic potential, with a particular focus on recent results derived from high-throughput genomic and proteomic studies. As a complement, we provide experimental evidence for the detection of phosphorylations and acetylations in human protamine 1 using a mass spectrometry approach. The available data indicate that the sperm chromatin is much more complex than what it was previously thought, raising the possibility that it could also serve to transmit crucial paternal epigenetic information to the embryo. 展开更多
关键词 GENOMICS male infertility PROTEOMICS sperm chromatin sperm epigenetics
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Expression of the human TSPY gene in the brains of transgenic mice suggests a potential role of this Y chromosome gene in neural functions 被引量:1
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作者 Tatsuo Kido Stephanie Schubert +1 位作者 Jrg Schmidtke Yun-Fai Chris Lau 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2011年第5期181-191,共11页
The testis specific protein Y-encoded (TSPY) is a member of TSPY/SET/NAP1 superfamily, encoded within the gonadoblastoma locus on the Y chromosome. TSPY shares a highly conserved SET/NAP-domain responsible for prote... The testis specific protein Y-encoded (TSPY) is a member of TSPY/SET/NAP1 superfamily, encoded within the gonadoblastoma locus on the Y chromosome. TSPY shares a highly conserved SET/NAP-domain responsible for protein--protein interaction among TSPY/SET/NAP 1 proteins. Accumulating data, so far, support the role of TSPYas the gonadoblastoma gene, involved in germ cell tumorigenesis. The X-chromosome homolog of TSPY, TSPX is expressed in various tissues at both fetal and adult stages, including the brain, and is capable of interacting with the multi-domain adapter protein CASK, thereby influencing the synaptic and transcriptional functions and developmental regulation of CASK in the brain and other neural tissues. Similar to TSPX, we demonstrated that TSPY could interact with CASK at its SET/NAP-domain in cultured cells. Transgenic mice harboring a human TSPYgene and flanking sequences showed specific expression of the human TSPYtransgene in both testis and brain. The neural expression pattern of the human TSPYgene overlapped with those of the endogenous mouse Cask and Tspx gene. Similarly with TSPX, TSPY was co-localized with CASK in neuronal axon fibers in the brain, suggesting a potential role(s) of TSPY in development and/or physiology of the nervous system. 展开更多
关键词 TSPY TSPX CASK Y chromosome Neuron TESTIS
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African origins and chronic kidney disease susceptibility in the human immunodeficiency virus era 被引量:3
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作者 Alex N Kasembeli Raquel Duarte +1 位作者 Michèle Ramsay Saraladevi Naicker 《World Journal of Nephrology》 2015年第2期295-306,共12页
Chronic kidney disease (CKD) is a major public health problem worldwide with the estimated incidence growing by approximately 6% annually. There are striking ethnic differences in the prevalence of CKD such that, in... Chronic kidney disease (CKD) is a major public health problem worldwide with the estimated incidence growing by approximately 6% annually. There are striking ethnic differences in the prevalence of CKD such that, in the United States, African Americans have the highest prevalence of CKD, four times the incidence of end stage renal disease when compared to Americans of European ancestry suggestive of genetic predisposition. Diabetes mellitus, hypertension and human immunodeficiency virus (HIV) infection are the major causes of CKD. HIV-associated nephropathy (HIVAN) is an irreversible form of CKD with considerable morbidity and mortality and is present predominantly in people of African ancestry. The APOL1 G1 and G2 alleles were more strongly associated with the risk for CKD than the previously examined MYH9 E1risk haplotype in individuals of African ancestry. A strong association was reported in HIVAN, suggesting that 50% of African Americans with two APOL1 risk alleles, if untreated, would develop HIVAN. However these two variants are not enough to cause disease. The prevailing belief is that modifying factors or second hits (including genetic hits) underlie the pathogenesis of kidney disease. This work reviews the history of genetic susceptibility of CKD and outlines current theories regarding the role for APOL1 in CKD in the HIV era. 展开更多
关键词 Chronic kidney disease GENETICS African ancestry Human immunodefciency virus APOL1 MYH9 Human immunodefciency virus-associated nephropathy
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How and Why Do Gestational Trophoblastic Neoplasms Overproduce Human Chorionic Gonadotropin? 被引量:1
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作者 C. V. Rao 《Open Journal of Obstetrics and Gynecology》 2015年第1期1-5,共5页
From the published data, the present mini-review attempts to answer two fundamental questions about the gestational trophoblastic neoplasms. In addition, it extrapolates the findings to other cancers that produce smal... From the published data, the present mini-review attempts to answer two fundamental questions about the gestational trophoblastic neoplasms. In addition, it extrapolates the findings to other cancers that produce small amounts of hCG and how a novel therapies could be developed. 展开更多
关键词 Human Chorionic GONADOTROPIN HCG Receptors GESTATIONAL Trophoblastic NEOPLASMS HCG BIOSYNTHESIS CHORIOCARCINOMA Cells
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What is the purpose of launching the World Journal of Medical Genetics? 被引量:1
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作者 Hans van Bokhoven 《World Journal of Medical Genetics》 2011年第1期1-3,共3页
Congratulations to the publisher,members of the editorial board of the journal,all the authors and readers for launching the World Journal of Medical Genetics(WJMG)as a new member of the World series journal family!Fo... Congratulations to the publisher,members of the editorial board of the journal,all the authors and readers for launching the World Journal of Medical Genetics(WJMG)as a new member of the World series journal family!Following the completion of the Human Genome Project,medical genetic research has seen spectacular progress over the last decade.The number of genes that have been linked to Mendelian human traits has grown exponentially and currently this process is peaking with the access to robust genome-wide sequencing power.The genomics revolution is also seen for elucidation of rare and common DNA variants that increase risk for common disorders.Given this fast progress,there is an increasing need for making the results of genetics and genomics studies rapidly and freely available to the larger community.Thus,the decision for inaugurating this new journal is a timely one.The WJMG is a peer-reviewed,open-access periodical centered in all aspects of medical genetics research,with multidisciplinary coverage:from human phenotype to genetic and genomic mutations and variations to the study of pathological mechanisms.If you want to share new results of your research with a link to medical genetics with your peers,you will find the WJMG a good media to publish your papers! 展开更多
关键词 Medical genetics GENOMICS Biomedical SCIENCES PEER-REVIEWED Open-access JOURNAL
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Region-specific microRNA signatures in the human epididymis 被引量:2
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作者 James A Browne Shih-Hsing Leir +1 位作者 Scott E Eggener Ann Harris 《Asian Journal of Andrology》 SCIE CAS CSCD 2018年第6期539-544,共6页
The epithelium of the human epididymis maintains an appropriate luminal environment for sperm maturation that is essential for male fertility. Regional expression of small noncoding RNAs such as microRNAs contributes ... The epithelium of the human epididymis maintains an appropriate luminal environment for sperm maturation that is essential for male fertility. Regional expression of small noncoding RNAs such as microRNAs contributes to segment-specific gene expression and differentiated functions. MicroRNA profiles were reported in human epididymal tissues but not specifically in the epithelial cells derived from those regions. Here, we reveal miRNA signatures of primary cultures of caput, corpus, and cauda epididymis epithelial cells and of the tissues from which they were derived. We identify 324 epithelial cell-derived microRNAs and 259 tissue-derived microRNAs in the epididymis, some of which displayed regionalized expression patterns in cells and/or tissues. Caput cell-enriched miRNAs included miR-573 and miR-155. Cauda cell-enriched miRNAs included miR-1204 and miR-770. Next, we determined the gene ontology pathways associated with in silico predicted target genes of the differentially expressed miRNAs. The effect of androgen receptor stimulation on miRNA expression was also investigated. These data show novel epithelial cell-derived miRNAs that may regulate the expression of important gene networks that are responsible for the regionalized gene expression and function of the epididymis. 展开更多
关键词 caput cauda CORPUS human epididymis MICRORNA
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Battle of the sexes: contrasting roles of testis-specific protein Y-encoded (TSPY) and TSPX in human oncogenesis
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作者 Yun-Fai Chris Lau Yunmin Li Tatsuo Kido 《Asian Journal of Andrology》 SCIE CAS CSCD 2019年第3期260-269,共10页
The Y-located testis-specific protein Y-encoded (TSPY) and its X-homologue TSPX originated from the same ancestral gene, but act as a proto-oncogene and a tumor suppressor gene, respectively. TSPY has specialized in m... The Y-located testis-specific protein Y-encoded (TSPY) and its X-homologue TSPX originated from the same ancestral gene, but act as a proto-oncogene and a tumor suppressor gene, respectively. TSPY has specialized in male-specific functions, while TSPX has assumed the functions of the ancestral gene. Both TSPY and TSPX harbor a conserved SET/NAP domain, but are divergent at flanking structures. Specifically, TSPX contains a C-terminal acidic domain, absent in TSPY. They possess contrasting properties, in which TSPY and TSPX, respectively, accelerate and arrest cell proliferation, stimulate and inhibit cyclin B-CDK1 phosphorylation activities, have no effect and promote proteosomal degradation of the viral HBx oncoprotein, and exacerbate and repress androgen receptor (AR) and constitutively active AR variant, such as AR-V7, gene transactivation. The inhibitory domain has been mapped to the carboxyl acidic domain in TSPX, truncation of which results in an abbreviated TSPX exerting positive actions as TSPY. Transposition of the acidic domain to the C-terminus of TSPY results in an inhibitory protein as intact TSPX. Hence, genomic mutations/aberrant splicing events could generate TSPX proteins with truncated acidic domain and oncogenic properties as those for TSPY. Further, TSPY is upregulated by AR and AR-V7 in ligand-dependent and ligand-independent manners, respectively, suggesting the existence of a positive feedback loop between a Y-located proto-oncogene and male sex hormone/receptors, thereby amplifying the respective male oncogenic actions in human cancers and diseases. TSPX counteracts such positive feedback loop. Hence, TSPY and TSPX are homologues on the sex chromosomes that function at the two extremes of the human oncogenic spectrum. 展开更多
关键词 ANDROGEN receptor AR-V7 cell cycle regulation cyclin B-CDK1 ONCOGENE SEX chromosomes SEX differences TSPX TSPY tumor suppressor
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A variant in IL6ST with a selective IL-11 signaling defect in human and mouse 被引量:1
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作者 Tobias Schwerd Freia Krause +17 位作者 Stephen R.F.Twigg Dominik Aschenbrenner Yin-Huai Chen Uwe Borgmeyer Miryam Müller Santiago Manrique Neele Schumacher Steven A.Wall Jonathan Jung Timo Damm Claus-Christian Glüer Jürgen Scheller Stefan Rose-John E.Yvonne Jones Arian Laurence Andrew O.M.Wilkie Dirk Schmidt-Arras Holm H.Uhlig 《Bone Research》 SCIE CAS CSCD 2020年第2期157-168,共12页
The GP130 cytokine receptor subunit encoded by IL6ST is the shared receptor for ten cytokines of the IL-6 family. We describe a homozygous non-synonymous variant in IL6 ST(p.R281 Q) in a patient with craniosynostosis ... The GP130 cytokine receptor subunit encoded by IL6ST is the shared receptor for ten cytokines of the IL-6 family. We describe a homozygous non-synonymous variant in IL6 ST(p.R281 Q) in a patient with craniosynostosis and retained deciduous teeth. We characterize the impact of the variant on cytokine signaling in vitro using transfected cell lines as well as primary patient-derived cells and support these findings using a mouse model with the corresponding genome-edited variant Il6 st p.R279 Q. We show that human GP130 p.R281 Q is associated with selective loss of IL-11 signaling without affecting IL-6, IL-27, OSM, LIF, CT1, CLC, and CNTF signaling. In mice Il6 st p.R279 Q lowers litter size and causes facial synostosis and teeth abnormalities. The effect on IL-11 signaling caused by the GP130 variant shows incomplete penetrance but phenocopies aspects of IL11 RA deficiency in humans and mice. Our data show that a genetic variant in a pleiotropic cytokine receptor can have remarkably selective defects. 展开更多
关键词 IL11 CYTOKINE FACIAL
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