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哺乳动物剪接分歧受漂变、缓冲和标度律的影响。

Mammalian splicing divergence is shaped by drift, buffering in , and a scaling law.

机构信息

Shenzhen Key Laboratory of Gene Regulation and Systems Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, China.

Department of Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, China.

出版信息

Life Sci Alliance. 2021 Dec 30;5(4). doi: 10.26508/lsa.202101333. Print 2022 Apr.

Abstract

Alternative splicing is ubiquitous, but the mechanisms underlying its pattern of evolutionary divergence across mammalian tissues are still underexplored. Here, we investigated the -regulatory divergences and their relationship with tissue-dependent -regulation in multiple tissues of an F1 hybrid between two mouse species. Large splicing changes between tissues are highly conserved and likely reflect functional tissue-dependent regulation. In particular, micro-exons frequently exhibit this pattern with high inclusion levels in the brain. -divergence of splicing appears to be largely non-adaptive. Although divergence is in general associated with higher densities of sequence variants in regulatory regions, events with high usage of the dominant isoform apparently tolerate more mutations, explaining why their exon sequences are highly conserved but their intronic splicing site flanking regions are not. Moreover, we demonstrate that non-adaptive mutations are often masked in tissues where accurate splicing likely is more important, and experimentally attribute such buffering effect to -regulatory splicing efficiency.

摘要

可变剪接普遍存在,但哺乳动物组织中其进化分歧的机制仍未得到充分探索。在这里,我们研究了两个鼠种的 F1 杂种的多种组织中的调控差异及其与组织依赖性调控的关系。组织间的大剪接变化高度保守,可能反映了功能上的组织依赖性调控。特别是,微外显子经常表现出这种模式,在大脑中具有高的包含水平。剪接的调控分歧似乎在很大程度上是非适应性的。虽然分歧通常与调控区域中序列变异的更高密度相关,但具有高优势异构体使用率的事件显然可以容忍更多的突变,这解释了为什么它们的外显子序列高度保守,但它们的内含子剪接位点侧翼区域却没有。此外,我们证明,非适应性突变在准确剪接可能更为重要的组织中往往被掩盖,并且通过实验将这种缓冲效应归因于调控性剪接效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f026/8739531/a9f9d6b4e155/LSA-2021-01333_Fig1.jpg

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