Pre-mRNA splicing and its regulation in Caenorhabditis elegans.

Alan M Zahler
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引用次数: 2

Abstract

Alternative splicing is a common mechanism for the generation of multiple isoforms of proteins. It can function to expand the proteome of an organism and can serve as a way to turn off gene expression after transcription. This review focuses on splicing, its regulation and the progress in this field achieved through studies in C. elegans. Recent experiments, including RNA-Seq to uncover and measure the extent of alternative splicing, comparative genomics to identify splicing regulatory elements, and the development of elegant genetic screens using fluorescent reporter constructs, have increased our understanding of the cis-acting sequences that regulate alternative splicing and the trans-acting protein factors that bind to these sequences. The topics covered in this review include constitutive splicing factors, identification of alternatively spliced genes, alternative splicing regulation and the coupling of alternative splicing to nonsense-mediated decay. The significant progress towards uncovering the alternative splicing code in this organism is discussed.

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秀丽隐杆线虫前体mrna剪接及其调控。
选择性剪接是产生多种蛋白质同种异构体的常见机制。它可以扩展生物体的蛋白质组,并可以作为关闭转录后基因表达的一种方式。本文就秀丽隐杆线虫剪接及其调控机制的研究进展作一综述。最近的实验,包括揭示和测量选择性剪接程度的RNA-Seq,鉴定剪接调控元件的比较基因组学,以及使用荧光报告构建的优雅遗传筛选,增加了我们对调节选择性剪接的顺式作用序列和结合这些序列的反式作用蛋白因子的理解。本综述涵盖的主题包括组成剪接因子、可选剪接基因的鉴定、可选剪接调控以及可选剪接与无义介导衰变的耦合。讨论了在该生物中发现的可选剪接密码的重大进展。
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