To investigate the roles of maspin and kai1 expression in tumorigenesis and progression of gastric cancer. Methods Maspin and kai1 expressions were detected in normal gastric mucosa (n = 182), gastric dysplasia (n = 6...To investigate the roles of maspin and kai1 expression in tumorigenesis and progression of gastric cancer. Methods Maspin and kai1 expressions were detected in normal gastric mucosa (n = 182), gastric dysplasia (n = 69), and gastric cancer (n = 113) by immunohisto-chemistry. Their expressions were compared with clinicopathological parameters of tumors. Relationship between maspin and kai1 expression was also concerned in gastric cancer. Results The positive rates of maspin expression were 79.8% (145/182), 75.4% (52/69), and 50.4% (57/113) in normal gastric mucosa, gastric dysplasia, and gastric cancer, while those of kai1 expression were 81.9% (149/182), 65.2% (49/69), and 58.4% (66/113) in corresponding tissues respectively. Gastric cancer less frequently expressed maspin than the normal gastric mucosa and gastric dysplasia (P < 0.05), while dysplasia and cancer showed less frequent expression of kai1 than normal mucosa (P < 0.05). Maspin expression showed negative association with invasive depth, metastasis, Lauren’s and histological classifications (P < 0.05), but not with tumor size, Borrmann’s classification, growth pattern or TNM staging (P > 0.05). Kai1 expression was negatively correlated with invasive depth, metastasis, growth pattern, Lauren’s and histo-logical classifications (P < 0.05), but not with tumor size, Borrmann’s classification or TNM staging (P > 0.05). Maspin and kai1 were collaboratively expressed in gastric cancer (P < 0.05). Conclusions Down-regulated expressions of maspin and kai1 play an important role in gastric carcinogenesis. Abnormal expression of maspin and kai1 might have inhibitory effects on invasion and metastasis of gastric cancer and act as an effe-ctive and objective marker to indicate the pathobiological behaviors of gastric cancer.展开更多
BACKGROUND: Several studies have shown that KAI1 inhibits tumor metastasis, but its mechanism is not clear. The present study aimed to determine the role of KAI1 in lymphatic metastasis, specifically in pancreatic can...BACKGROUND: Several studies have shown that KAI1 inhibits tumor metastasis, but its mechanism is not clear. The present study aimed to determine the role of KAI1 in lymphatic metastasis, specifically in pancreatic cancer. METHODS: The KAI1 gene was transfected into the pancreatic cancer cell line MIA PaCa-2 and PANC-1 by using liposomes and selected by G418, and the protein was measured by Western blotting. After successful infection, the cell growth curve was studied by MTT, vascular endothelial growth factor C(VEGF-C) secretion by pancreatic cancer cell were measured by ELISA. The KAI1 and pCMV transfected MIA PaCa-2 cells were renamed as MIA PaCa-2-K and MIA PaCa-2-p. These two kinds of cells were injected into the subcuticular layer of nude mice; both tumor growth and metastasis through the lymphatic nodes were assessed. Lymphangiogenesis in tumors was measured by immunohistochemistry. RESULTS: The VEGF-C secretion was significantly reduced in MIA PaCa-2 cells compared with PANC-1 cells after being transfected with the KAI1 gene. The growth rate of subcutaneous tumors was similar after the injection of MIA PaCa-2-K, MIA PaCa-2, and MIA PaCa-2-p. MIA PaCa-2-K tumors showed slower lymphangiogenesis and lymph node metastasis compared with MIA PaCa-2 and MIA PaCa-2-p tumors. CONCLUSION: The overexpression of KAI1 inhibits the lymphangiogenesis and lymph node metastasis of MIA PaCa-2 pancreatic tumors.展开更多
The canonical signaling of interferon gamma(IFN-γ)through the Janus kinase 1 and 2–signal transducer and activator of transcription 1(STAT1)axis leads to the expression of several interferon-stimulated genes(ISGs),w...The canonical signaling of interferon gamma(IFN-γ)through the Janus kinase 1 and 2–signal transducer and activator of transcription 1(STAT1)axis leads to the expression of several interferon-stimulated genes(ISGs),which have diverse effects depending on the cellular context.In glioblastoma,a highly aggressive primary brain tumor in adults,elements of IFN-γcanonical signaling are deregulated,resulting in the overexpression of STAT1-target ISGs associated with tumor progression.This mini-review highlights key ISGs,including STAT1,interferon regulatory factor 1,programmed death-ligand 1,indoleamine 2,3-dioxygenase 1,and interferon-stimulated gene 15,involved in the pathology of glioblastoma.These genes may serve as valuable biomarkers and have therapeutic potential for targeting IFN-γsignaling in this malignancy.展开更多
Wheat grain morphology,particularly grain length(GL)and width(GW),is a key determinant of yield.To improve the suboptimal grain dimensions of the local anthocyanin-rich variety Guizi 1(GZ1),we crossed it with Zhongyan...Wheat grain morphology,particularly grain length(GL)and width(GW),is a key determinant of yield.To improve the suboptimal grain dimensions of the local anthocyanin-rich variety Guizi 1(GZ1),we crossed it with Zhongyan 96-3(ZY96-3),an elite germplasm known for faster grain filling and superior grain size.A genotyping-by-sequencing(GBS)approach was applied to an F_(2)population of 110 individuals derived from GZ1×ZY96-3,resulting in the identification of 23,134 high-quality SNPs.Most of the SNPs associated with GL and GW were clustered on chromosomes 2B,3A,and 3B.QTL mapping for GL revealed two major loci,GL1 on chromosome 2B and GL2 on chromosome 3B,and eight candidate genes were identified within their corresponding intervals(2B:63.6–70.4 Mb;3B:631.5–633.3 Mb).These genes encode proteins potentially involved in grain size regulation,including a TOR2 regulation-associated protein,erect spike 2(EP2),fibroblast growth factor 6(FGF6),cellulose synthase-like(CSLD),RelA/pot homologue three family protein,and three GDSL esterase/lipase(GLIP)proteins.Additionally,we detected a QTL associated with GW on chromosome 3A and identified two candidate genes,TOR2 regulation and starch synthase within the 61.4–68.5 Mb interval.Overall,this study provides a strong theoretical and technical basis for wheat genetic improvement and offers valuable resources for precise QTL mapping and candidate gene discovery.展开更多
Polyembryony has posed a significant impediment to the advancement of citrus hybrid breeding.FhRWP is widely regarded as a pivotal factor governing asexual reproduction in citrus,and prior research has demonstrated th...Polyembryony has posed a significant impediment to the advancement of citrus hybrid breeding.FhRWP is widely regarded as a pivotal factor governing asexual reproduction in citrus,and prior research has demonstrated that FhARID1,acting as an upstream regulator,modulates FhRWP expression.In this study,we performed a genome-wide characterization of the ARID-HMG-related genes using the short juvenile minicitrus Fortunella hindsii.A total of 20 ARID-HMG-related genes were identified.Protein interaction network and enrichment analysis suggested that ARID-HMG-related proteins might might be involved in chromatin remodeling complexes.Knockout of FhARID1 in F.hindsii did not induce the conversion from polyembryony to monoembryony.However,fharid1 plants in T1 generation exhibited abnormal proliferation at axillary buds,which is similar to phenotype of fhrwp plants.Expression analysis of fharid1 ovary tissues revealed the downregulation of FhRWP.The results indicated that FhARID1,as an upstream regulator of FhRWP,has an effect on the development of citrus axillary buds.Expression analysis of overexpressed leaves of FhARID1 lines showed that no significant up-regulation of FhRWP,indicating that FhARID1 is not the sole upstream regulatory factor of FhRWP.Only FhARID2 showed a correlation in expression with FhARID1 among the ARID-related genes,further supporting the notion that this gene may be involved in complex formation rather than acting alone.Yeast two-hybrid and MS/MS spectra further indicated that FhARID1 function requires casein kinase II-mediated post-transcriptional phosphorylation.This study elucidated the function of FhARID1 in citrus apomixis and axillary bud development,providing a fundamental basis for understanding the role of ARID-HMG-related genes.展开更多
文摘To investigate the roles of maspin and kai1 expression in tumorigenesis and progression of gastric cancer. Methods Maspin and kai1 expressions were detected in normal gastric mucosa (n = 182), gastric dysplasia (n = 69), and gastric cancer (n = 113) by immunohisto-chemistry. Their expressions were compared with clinicopathological parameters of tumors. Relationship between maspin and kai1 expression was also concerned in gastric cancer. Results The positive rates of maspin expression were 79.8% (145/182), 75.4% (52/69), and 50.4% (57/113) in normal gastric mucosa, gastric dysplasia, and gastric cancer, while those of kai1 expression were 81.9% (149/182), 65.2% (49/69), and 58.4% (66/113) in corresponding tissues respectively. Gastric cancer less frequently expressed maspin than the normal gastric mucosa and gastric dysplasia (P < 0.05), while dysplasia and cancer showed less frequent expression of kai1 than normal mucosa (P < 0.05). Maspin expression showed negative association with invasive depth, metastasis, Lauren’s and histological classifications (P < 0.05), but not with tumor size, Borrmann’s classification, growth pattern or TNM staging (P > 0.05). Kai1 expression was negatively correlated with invasive depth, metastasis, growth pattern, Lauren’s and histo-logical classifications (P < 0.05), but not with tumor size, Borrmann’s classification or TNM staging (P > 0.05). Maspin and kai1 were collaboratively expressed in gastric cancer (P < 0.05). Conclusions Down-regulated expressions of maspin and kai1 play an important role in gastric carcinogenesis. Abnormal expression of maspin and kai1 might have inhibitory effects on invasion and metastasis of gastric cancer and act as an effe-ctive and objective marker to indicate the pathobiological behaviors of gastric cancer.
基金supported by a grant from the National Nature Science Foundation of China(81071982)
文摘BACKGROUND: Several studies have shown that KAI1 inhibits tumor metastasis, but its mechanism is not clear. The present study aimed to determine the role of KAI1 in lymphatic metastasis, specifically in pancreatic cancer. METHODS: The KAI1 gene was transfected into the pancreatic cancer cell line MIA PaCa-2 and PANC-1 by using liposomes and selected by G418, and the protein was measured by Western blotting. After successful infection, the cell growth curve was studied by MTT, vascular endothelial growth factor C(VEGF-C) secretion by pancreatic cancer cell were measured by ELISA. The KAI1 and pCMV transfected MIA PaCa-2 cells were renamed as MIA PaCa-2-K and MIA PaCa-2-p. These two kinds of cells were injected into the subcuticular layer of nude mice; both tumor growth and metastasis through the lymphatic nodes were assessed. Lymphangiogenesis in tumors was measured by immunohistochemistry. RESULTS: The VEGF-C secretion was significantly reduced in MIA PaCa-2 cells compared with PANC-1 cells after being transfected with the KAI1 gene. The growth rate of subcutaneous tumors was similar after the injection of MIA PaCa-2-K, MIA PaCa-2, and MIA PaCa-2-p. MIA PaCa-2-K tumors showed slower lymphangiogenesis and lymph node metastasis compared with MIA PaCa-2 and MIA PaCa-2-p tumors. CONCLUSION: The overexpression of KAI1 inhibits the lymphangiogenesis and lymph node metastasis of MIA PaCa-2 pancreatic tumors.
基金Supported by Colegio de Ciencia y Tecnología de la Universidad Autónoma de la Ciudad de México,No.CCYT-2025-CON-11.
文摘The canonical signaling of interferon gamma(IFN-γ)through the Janus kinase 1 and 2–signal transducer and activator of transcription 1(STAT1)axis leads to the expression of several interferon-stimulated genes(ISGs),which have diverse effects depending on the cellular context.In glioblastoma,a highly aggressive primary brain tumor in adults,elements of IFN-γcanonical signaling are deregulated,resulting in the overexpression of STAT1-target ISGs associated with tumor progression.This mini-review highlights key ISGs,including STAT1,interferon regulatory factor 1,programmed death-ligand 1,indoleamine 2,3-dioxygenase 1,and interferon-stimulated gene 15,involved in the pathology of glioblastoma.These genes may serve as valuable biomarkers and have therapeutic potential for targeting IFN-γsignaling in this malignancy.
基金Funding for this project was provided by the National Natural Science Foundation of China(Grants No.32160456,32360474,32360486,32260496)the Key Laboratory of Functional Agriculture of Guizhou Provincial Higher Education Institutions(Grant No.Qianjiaoji(2023)007).
文摘Wheat grain morphology,particularly grain length(GL)and width(GW),is a key determinant of yield.To improve the suboptimal grain dimensions of the local anthocyanin-rich variety Guizi 1(GZ1),we crossed it with Zhongyan 96-3(ZY96-3),an elite germplasm known for faster grain filling and superior grain size.A genotyping-by-sequencing(GBS)approach was applied to an F_(2)population of 110 individuals derived from GZ1×ZY96-3,resulting in the identification of 23,134 high-quality SNPs.Most of the SNPs associated with GL and GW were clustered on chromosomes 2B,3A,and 3B.QTL mapping for GL revealed two major loci,GL1 on chromosome 2B and GL2 on chromosome 3B,and eight candidate genes were identified within their corresponding intervals(2B:63.6–70.4 Mb;3B:631.5–633.3 Mb).These genes encode proteins potentially involved in grain size regulation,including a TOR2 regulation-associated protein,erect spike 2(EP2),fibroblast growth factor 6(FGF6),cellulose synthase-like(CSLD),RelA/pot homologue three family protein,and three GDSL esterase/lipase(GLIP)proteins.Additionally,we detected a QTL associated with GW on chromosome 3A and identified two candidate genes,TOR2 regulation and starch synthase within the 61.4–68.5 Mb interval.Overall,this study provides a strong theoretical and technical basis for wheat genetic improvement and offers valuable resources for precise QTL mapping and candidate gene discovery.
基金funded by the National Key Research and Development Program of China(Grant No.2022YFF1003100)Modern Citrus Industry Technology System of China(Grant No.CARS-26).
文摘Polyembryony has posed a significant impediment to the advancement of citrus hybrid breeding.FhRWP is widely regarded as a pivotal factor governing asexual reproduction in citrus,and prior research has demonstrated that FhARID1,acting as an upstream regulator,modulates FhRWP expression.In this study,we performed a genome-wide characterization of the ARID-HMG-related genes using the short juvenile minicitrus Fortunella hindsii.A total of 20 ARID-HMG-related genes were identified.Protein interaction network and enrichment analysis suggested that ARID-HMG-related proteins might might be involved in chromatin remodeling complexes.Knockout of FhARID1 in F.hindsii did not induce the conversion from polyembryony to monoembryony.However,fharid1 plants in T1 generation exhibited abnormal proliferation at axillary buds,which is similar to phenotype of fhrwp plants.Expression analysis of fharid1 ovary tissues revealed the downregulation of FhRWP.The results indicated that FhARID1,as an upstream regulator of FhRWP,has an effect on the development of citrus axillary buds.Expression analysis of overexpressed leaves of FhARID1 lines showed that no significant up-regulation of FhRWP,indicating that FhARID1 is not the sole upstream regulatory factor of FhRWP.Only FhARID2 showed a correlation in expression with FhARID1 among the ARID-related genes,further supporting the notion that this gene may be involved in complex formation rather than acting alone.Yeast two-hybrid and MS/MS spectra further indicated that FhARID1 function requires casein kinase II-mediated post-transcriptional phosphorylation.This study elucidated the function of FhARID1 in citrus apomixis and axillary bud development,providing a fundamental basis for understanding the role of ARID-HMG-related genes.
基金国家重点基础研究发展(973)规划项目(No.2002CB513107)国家自然科学基金项目(No.30528012)+3 种基金海南省教育厅高校科研基金项目(No.HjKj200747)Supported by the Major State Basic Research Development Program of China(No.2002CB513107)National Natural Science Foundation of China(No.30528012)the Research Fund of Higher Education of Hainan Ministry of Education(No.Hjkj200747)