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功能性转录因子结合位点频繁的获得与丧失。

Frequent gain and loss of functional transcription factor binding sites.

作者信息

Doniger Scott W, Fay Justin C

机构信息

Computational Biology Program, Washington University School of Medicine, St. Louis, Missouri, United States of America.

出版信息

PLoS Comput Biol. 2007 May;3(5):e99. doi: 10.1371/journal.pcbi.0030099. Epub 2007 Apr 19.

Abstract

Cis-regulatory sequences are not always conserved across species. Divergence within cis-regulatory sequences may result from the evolution of species-specific patterns of gene expression or the flexible nature of the cis-regulatory code. The identification of functional divergence in cis-regulatory sequences is therefore important for both understanding the role of gene regulation in evolution and annotating regulatory elements. We have developed an evolutionary model to detect the loss of constraint on individual transcription factor binding sites (TFBSs). We find that a significant fraction of functionally constrained binding sites have been lost in a lineage-specific manner among three closely related yeast species. Binding site loss has previously been explained by turnover, where the concurrent gain and loss of a binding site maintains gene regulation. We estimate that nearly half of all loss events cannot be explained by binding site turnover. Recreating the mutations that led to binding site loss confirms that these sequence changes affect gene expression in some cases. We also estimate that there is a high rate of binding site gain, as more than half of experimentally identified S. cerevisiae binding sites are not conserved across species. The frequent gain and loss of TFBSs implies that cis-regulatory sequences are labile and, in the absence of turnover, may contribute to species-specific patterns of gene expression.

摘要

顺式调控序列在物种间并不总是保守的。顺式调控序列内的差异可能源于物种特异性基因表达模式的进化或顺式调控密码的灵活性。因此,识别顺式调控序列中的功能差异对于理解基因调控在进化中的作用以及注释调控元件都很重要。我们开发了一种进化模型来检测单个转录因子结合位点(TFBS)上约束的丧失。我们发现,在三种密切相关的酵母物种中,很大一部分功能受限的结合位点以谱系特异性的方式丢失了。结合位点的丢失以前曾用周转来解释,即结合位点的同时获得和丢失维持了基因调控。我们估计,几乎所有丢失事件的一半不能用结合位点周转来解释。重现导致结合位点丢失的突变证实,这些序列变化在某些情况下会影响基因表达。我们还估计结合位点获得的速率很高,因为超过一半的实验鉴定的酿酒酵母结合位点在物种间不保守。TFBS的频繁获得和丢失意味着顺式调控序列是不稳定的,并且在没有周转的情况下,可能导致物种特异性的基因表达模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d19/1876492/b478bd28c8dc/pcbi.0030099.g001.jpg

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