Institute of Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, China.
Wiley Interdiscip Rev RNA. 2018 May;9(3):e1468. doi: 10.1002/wrna.1468. Epub 2018 Feb 9.
Pre-mRNA alternative splicing is an important mechanism used to expand protein diversity in higher eukaryotes, and mutually exclusive splicing is a specific type of alternative splicing in which only one of the exons in a cluster is included in functional transcripts. The most extraordinary example of this is the Drosophila melanogaster Down's syndrome cell adhesion molecule gene (Dscam), which potentially encodes 38,016 different isoforms through mutually exclusive splicing. Mutually exclusive splicing is a unique and challenging model that can be used to elucidate the evolution, regulatory mechanism, and function of alternative splicing. The use of new approaches has not only greatly expanded the mutually exclusive exome, but has also enabled the systematic analyses of single-cell alternative splicing during development. Furthermore, the identification of long-range RNA secondary structures provides a mechanistic framework for the regulation of mutually exclusive splicing (i.e., Dscam splicing). This article reviews recent insights into the identification, underlying mechanism, and roles of mutually exclusive splicing. This article is categorized under: RNA Processing > Splicing Regulation/Alternative Splicing RNA Structure and Dynamics > Influence of RNA Structure in Biological Systems.
前体 mRNA 可变剪接是高等真核生物中扩大蛋白质多样性的一种重要机制,而外显子互斥剪接是一种特殊的可变剪接类型,其中簇中的一个外显子仅包含在功能性转录本中。这种情况最显著的例子是果蝇黑腹果蝇唐氏综合征细胞黏附分子基因(Dscam),通过外显子互斥剪接,它可能编码 38016 种不同的异构体。外显子互斥剪接是一个独特而具有挑战性的模型,可用于阐明可变剪接的进化、调控机制和功能。新方法的应用不仅大大扩展了外显子互斥组,而且还能够系统地分析发育过程中的单细胞可变剪接。此外,长距离 RNA 二级结构的鉴定为外显子互斥剪接(即 Dscam 剪接)的调控提供了一个机制框架。本文综述了对外显子互斥剪接的鉴定、潜在机制和作用的最新认识。本文属于以下类别:RNA 加工>剪接调控/可变剪接 RNA 结构和动态>RNA 结构在生物系统中的影响。