首页> 外文期刊>European Journal of Immunology >CD5 expression is regulated during human T-cell activation by alternative polyadenylation, PTBP1, and miR-204
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CD5 expression is regulated during human T-cell activation by alternative polyadenylation, PTBP1, and miR-204

机译:在人类t细胞CD5表达式是监管激活的可变聚腺苷酸化、PTBP1和mir - 204

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摘要

T lymphocytes stimulated through their antigen receptor (TCR) preferentially express mRNA isoforms with shorter 3' untranslated regions (3'-UTRs) derived from alternative pre-mRNA cleavage and polyadenylation (APA). However, the physiological relevance of APA programs remains poorly understood. CD5 is a T-cell surface glycoprotein that negatively regulates TCR signaling from the onset of T-cell activation. CD5 plays a pivotal role in mediating outcomes of cell survival or apoptosis, and may prevent both autoimmunity and cancer. In human primary T lymphocytes and Jurkat cells we found three distinct mRNA isoforms encoding CD5, each derived from distinct poly(A) signals (PASs). Upon T-cell activation, there is an overall increase in CD5 mRNAs with a specific increase in the relative expression of the shorter isoforms. 3'-UTRs derived from these shorter isoforms confer higher reporter expression in activated T cells relative to the longer isoform. We further show that polypyrimidine tract binding protein (PTB/PTBP1) directly binds to the proximal PAS and PTB siRNA depletion causes a decrease in mRNA derived from this PAS, suggesting an effect on stability or poly(A) site selection to circumvent targeting of the longer CD5 mRNA isoform by miR-204. These mechanisms fine-tune CD5 expression levels and thus ultimately T-cell responses.
机译:通过抗原T淋巴细胞刺激受体(TCR)优先表达mRNA亚型3 '非翻译区较短(3 ' -UTRs)来自pre-mRNA替代乳沟和聚腺苷酸化(APA)。APA的生理相关程序仍然存在知之甚少。糖蛋白,消极的调节细胞从t细胞激活的信号。CD5在调解中起着关键作用的结果细胞生存或细胞凋亡,并可能防止两种自身免疫和癌症。我们发现三个淋巴细胞和Jurkat细胞不同的mRNA CD5亚型编码,每个派生从不同的聚(A)信号(通过)。激活,CD5的整体提升信使rna与特定的相对增加表达的更短的亚型。来自这些短亚型带来更高记者表达激活T细胞相对的同种型的时间越长。段位结合蛋白(PTB / PTBP1)直接绑定到近端不是和肺结核核损耗原因mRNA来源于下降这不是,这表明对稳定或产生影响保利(A)选址规避目标的时间越长CD5 mRNA同种型mir - 204。调整CD5表达水平和机制因此最终t细胞反应。

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