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RNPS1 stabilizes NAT10 protein to facilitate translation in cancer via tRNA ac^(4)C modification 被引量:3
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作者 Xiaochen Wang Rongsong Ling +2 位作者 yurong peng Weiqiong Qiu Demeng Chen 《International Journal of Oral Science》 SCIE CAS CSCD 2024年第1期73-84,共12页
Existing studies have underscored the pivotal role of N-acetyltransferase 10(NAT10) in various cancers. However, the outcomes of protein-protein interactions between NAT10 and its protein partners in head and neck squ... Existing studies have underscored the pivotal role of N-acetyltransferase 10(NAT10) in various cancers. However, the outcomes of protein-protein interactions between NAT10 and its protein partners in head and neck squamous cell carcinoma(HNSCC) remain unexplored. In this study, we identified a significant upregulation of RNA-binding protein with serine-rich domain 1(RNPS1) in HNSCC, where RNPS1 inhibits the ubiquitination degradation of NAT10 by E3 ubiquitin ligase, zinc finger SWIM domain-containing protein 6(ZSWIM6), through direct protein interaction, thereby promoting high NAT10 expression in HNSCC. This upregulated NAT10 stability mediates the enhancement of specific tRNA ac^(4)C modifications, subsequently boosting the translation process of genes involved in pathways such as IL-6 signaling, IL-8 signaling, and PTEN signaling that play roles in regulating HNSCC malignant progression, ultimately influencing the survival and prognosis of HNSCC patients. Additionally, we pioneered the development of TRMC-seq, leading to the discovery of novel t RNA-ac^(4)C modification sites, thereby providing a potent sequencing tool for tRNAac^(4)C research. Our findings expand the repertoire of tRNA ac^(4)C modifications and identify a role of tRNA ac^(4)C in the regulation of mRNA translation in HNSCC. 展开更多
关键词 NAT1 thereby TRANSLATION
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藻类作为生物标志物指示水环境变化的研究
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作者 唐佳丽 胡一晗 +6 位作者 刘洋 兰聪 徐金晶 彭钰蓉 黄澳 谢翔宇 侯建军 《水产研究》 2024年第2期144-156,共13页
以黄石磁湖为研究对象,基于高效液相色谱–化学分类法的光合色素分析手段以及多种水质综合评价方法,从多粒级角度比较处于不同营养状态的磁湖浮游植物多样性格局及其粒级演替规律,揭示浮游植物对环境因素变化的动态响应。结果显示:磁湖... 以黄石磁湖为研究对象,基于高效液相色谱–化学分类法的光合色素分析手段以及多种水质综合评价方法,从多粒级角度比较处于不同营养状态的磁湖浮游植物多样性格局及其粒级演替规律,揭示浮游植物对环境因素变化的动态响应。结果显示:磁湖总磷的季节变化从小到大依次为春季、秋季、冬季、夏季。磁湖春季优势物种为裸藻,隐藻;夏季优势物种为隐藻;秋季优势物种为裸藻、隐藻、绿藻;冬季优势物种为裸藻、隐藻、蓝藻和硅藻。磁湖富营养化严重时隐藻含量明显较其他藻类多,湖泊内浮游植物种类丰富时水体富营养化程度较轻。Chl a、TN浓度超标是磁湖四季富营养化的主要原因。CODMn季节性变化影响浮游植物群落结构组成及演替,并与湖泊富营养化程度改变有密切联系。本研究为城市湖泊生态环境监测评估和修复治理提供了方法依据、数据参考和工作基础。 展开更多
关键词 磁湖 浮游植物 HPLC-CHEMTAX 光合色素 生物多样性
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Immunometabolism:a new dimension in immunotherapy resistance 被引量:2
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作者 Chaoyue Xiao Wei Xiong +6 位作者 Yiting Xu Ji’an Zou Yue Zeng Junqi Liu yurong peng Chunhong Hu Fang Wu 《Frontiers of Medicine》 SCIE CSCD 2023年第4期585-616,共32页
Immune checkpoint inhibitors(ICIs)have demonstrated unparalleled clinical responses and revolutionized the paradigm of tumor treatment,while substantial patients remain unresponsive or develop resistance to ICIs as a ... Immune checkpoint inhibitors(ICIs)have demonstrated unparalleled clinical responses and revolutionized the paradigm of tumor treatment,while substantial patients remain unresponsive or develop resistance to ICIs as a single agent,which is traceable to cellular metabolic dysfunction.Although dysregulated metabolism has long been adjudged as a hallmark of tumor,it is now increasingly accepted that metabolic reprogramming is not exclusive to tumor cells but is also characteristic of immunocytes.Correspondingly,people used to pay more attention to the effect of tumor cell metabolism on immunocytes,but in practice immunocytes interact intimately with their own metabolic function in a way that has never been realized before during their activation and differentiation,which opens up a whole new frontier called immunometabolism.The metabolic intervention for tumor-infiltrating immunocytes could offer fresh opportunities to break the resistance and ameliorate existing ICI immunotherapy,whose crux might be to ascertain synergistic combinations of metabolic intervention with ICIs to reap synergic benefits and facilitate an adjusted anti-tumor immune response.Herein,we elaborate potential mechanisms underlying immunotherapy resistance from a novel dimension of metabolic reprogramming in diverse tumor-infiltrating immunocytes,and related metabolic intervention in the hope of offering a reference for targeting metabolic vulnerabilities to circumvent immunotherapeutic resistance. 展开更多
关键词 immune cell immunometabolism metabolic reprogramming IMMUNOTHERAPY resistance tumor microenvironment immune checkpoint inhibitor
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