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人类细胞中选择性 RNA 剪接的决定因素。

The determinants of alternative RNA splicing in human cells.

机构信息

Belarusian State University, Minsk, Belarus.

出版信息

Mol Genet Genomics. 2017 Dec;292(6):1175-1195. doi: 10.1007/s00438-017-1350-0. Epub 2017 Jul 13.

Abstract

Alternative splicing represents an important level of the regulation of gene function in eukaryotic organisms. It plays a critical role in virtually every biological process within an organism, including regulation of cell division and cell death, differentiation of tissues in the embryo and the adult organism, as well as in cellular response to diverse environmental factors. In turn, studies of the last decade have shown that alternative splicing itself is controlled by different mechanisms. Unfortunately, there is no clear understanding of how these diverse mechanisms, or determinants, regulate and constrain the set of alternative RNA species produced from any particular gene in every cell of the human body. Here, we provide a consolidated overview of alternative splicing determinants including RNA-protein interactions, epigenetic regulation via chromatin remodeling, coupling of transcription-to-alternative splicing, effect of secondary structures in pre-RNA, and function of the RNA quality control systems. We also extensively and critically discuss some mechanistic insights on coordinated inclusion/exclusion of exons during the formation of mature RNA molecules. We conclude that the final structure of RNA is pre-determined by a complex interplay between cis- and trans-acting factors. Altogether, currently available empirical data significantly expand our understanding of the functioning of the alternative splicing machinery of cells in normal and pathological conditions. On the other hand, there are still many blind spots that require further deep investigations.

摘要

可变剪接代表真核生物基因功能调控的一个重要层次。它在生物体的几乎所有生物学过程中都起着至关重要的作用,包括细胞分裂和细胞死亡的调控、胚胎和成年生物体组织的分化,以及细胞对各种环境因素的反应。反过来,过去十年的研究表明,可变剪接本身受不同机制的控制。不幸的是,人们尚不清楚这些不同的机制或决定因素如何调节和限制人体每个细胞中特定基因产生的可变 RNA 种类。在这里,我们提供了一个可变剪接决定因素的综合概述,包括 RNA-蛋白相互作用、染色质重塑的表观遗传调控、转录-可变剪接的偶联、前 RNA 中二级结构的影响以及 RNA 质量控制系统的功能。我们还广泛而批判性地讨论了一些关于在成熟 RNA 分子形成过程中外显子的协调包含/排除的机制见解。我们的结论是,RNA 的最终结构是由顺式和反式作用因子之间的复杂相互作用预先确定的。总的来说,目前可用的经验数据显著扩展了我们对正常和病理条件下细胞可变剪接机制功能的理解。另一方面,仍有许多盲点需要进一步深入研究。

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