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Splicing regulation: From a parts list of regulatory elements to an integrated splicing code

机译:拼接法规:从法规要素的零件清单到集成的拼接代码

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摘要

Alternative splicing of pre-mRNAs is a major contributor to both proteomic diversity and control of gene expression levels. Splicing is tightly regulated in different tissues and developmental stages, and its disruption can lead to a wide range of human diseases. An important long-term goal in the splicing field is to determine a set of rules or “code” for splicing that will enable prediction of the splicing pattern of any primary transcript from its sequence. Outside of the core splice site motifs, the bulk of the information required for splicing is thought to be contained in exonic and intronic cis-regulatory elements that function by recruitment of sequence-specific RNA-binding protein factors that either activate or repress the use of adjacent splice sites. Here, we summarize the current state of knowledge of splicing cis-regulatory elements and their context-dependent effects on splicing, emphasizing recent global/genome-wide studies and open questions.
机译:前mRNA的选择性剪接是蛋白质组学多样性和基因表达水平控制的主要贡献者。剪接在不同的组织和发育阶段受到严格调节,其破坏会导致多种人类疾病。剪接领域的一个重要的长期目标是确定用于剪接的一组规则或“代码”,这将使得能够根据其序列预测任何主要转录本的剪接模式。在核心剪接位点基序之外,剪接所需的大部分信息被认为包含在外显子和内含子顺式调节元件中,这些元件通过募集激活或抑制使用RNA的序列特异性RNA结合蛋白因子来发挥功能。相邻的剪接位点。在这里,我们总结了顺式调控元件的剪接知识及其对剪接的背景依赖性影响,重点介绍了最近的全球/全基因组研究和未解决的问题。

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