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SR proteins in vertical integration of gene expression from transcription to RNA processing to translation.

机译:SR蛋白在基因表达的垂直整合中从转录到RNA处理再到翻译。

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摘要

SR proteins have been studied extensively as a family of RNA-binding proteins that participate in both constitutive and regulated pre-mRNA splicing in mammalian cells. However, SR proteins were first discovered as factors that interact with transcriptionally active chromatin. Recent studies have now uncovered properties that connect these once apparently disparate functions, showing that a subset of SR proteins seem to bind directly to the histone 3 tail, play an active role in transcriptional elongation, and colocalize with genes that are engaged in specific intra- and interchromosome interactions for coordinated regulation of gene expression in the nucleus. These transcription-related activities are also coupled with a further expansion of putative functions of specific SR protein family members in RNA metabolism downstream of mRNA splicing, from RNA export to stability control to translation. These findings, therefore, highlight the broader roles of SR proteins in vertical integration of gene expression and provide mechanistic insights into their contributions to genome stability and proper cell-cycle progression in higher eukaryotic cells.
机译:SR蛋白已经作为RNA结合蛋白家族的一员进行了广泛研究,该蛋白既参与哺乳动物细胞的组成型又受调控的pre-mRNA剪接。但是,首先发现SR蛋白是与转录活性染色质相互作用的因子。近期的研究现已发现了将这些曾经明显不同的功能联系起来的特性,表明一部分SR蛋白似乎直接与组蛋白3尾部结合,在转录延伸中起积极作用,并与参与特定内源性基因的基因共定位。和染色体间相互作用来协调基因在细胞核中的表达。这些转录相关的活性还伴随着特定SR蛋白家族成员在mRNA剪接下游,从RNA输出到稳定性控制再到翻译的RNA代谢中推定功能的进一步扩展。因此,这些发现突出了SR蛋白在基因表达的垂直整合中的广泛作用,并为它们对高级真核细胞中基因组稳定性和适当细胞周期进程的贡献提供了机械学见解。

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