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哺乳动物中共表达基因簇的进化起源与维持

Evolutionary origin and maintenance of coexpressed gene clusters in mammals.

作者信息

Sémon Marie, Duret Laurent

机构信息

Laboratoire de Biométrie et Biologie Evolutive, UMR CNRS 5558, Université Claude Bernard Lyon 1, Villeurbanne, France.

出版信息

Mol Biol Evol. 2006 Sep;23(9):1715-23. doi: 10.1093/molbev/msl034. Epub 2006 Jun 6.

DOI:10.1093/molbev/msl034
PMID:16757654
Abstract

Gene order is not random with regard to gene expression in mammals: coexpressed genes, and in particular housekeeping genes, are clustered along chromosomes more often than expected by chance. To understand the origin of these clusters and to quantify the impact of this phenomenon on genome organization, we analyzed clusters of coexpressed genes in the human and mouse genomes. We show that neighboring genes experience continuous concerted expression changes during evolution, which leads to the formation of coexpressed gene clusters. The pattern of expression within these clusters evolves more slowly than the genomic average. Moreover, by studying gene order evolution, we show that some clusters are maintained by natural selection and, therefore, have a functional significance. However, we also demonstrate that some coexpressed gene clusters are the result of neutral coevolution effects, as illustrated by the clustering of genes escaping inactivation on the X chromosome. Moreover, we show that, although statistically significant, constraints on gene orders have a limited impact on mammalian genome organization, affecting only 3-5% of the pool of human and murine genes. It had been hypothesized that coexpressed gene clusters might correspond to large chromatin domains. In contradiction, we find that most of these clusters contain only 2 genes whose coexpression may be due to transcriptional read-through or the activity of bidirectional promoters.

摘要

在哺乳动物中,基因顺序与基因表达并非随机:共表达基因,尤其是管家基因,沿染色体成簇分布的频率高于随机预期。为了解这些基因簇的起源并量化这一现象对基因组组织的影响,我们分析了人类和小鼠基因组中共表达基因的簇。我们发现,相邻基因在进化过程中经历持续的协同表达变化,这导致了共表达基因簇的形成。这些基因簇内的表达模式比基因组平均水平进化得更慢。此外,通过研究基因顺序进化,我们发现一些基因簇是由自然选择维持的,因此具有功能意义。然而,我们也证明,一些共表达基因簇是中性协同进化效应的结果,如X染色体上逃避失活的基因成簇所示。此外,我们表明,尽管具有统计学意义,但对基因顺序的限制对哺乳动物基因组组织的影响有限,仅影响3%至5%的人类和小鼠基因库。曾有人假设共表达基因簇可能对应于大的染色质结构域。与此相反,我们发现这些基因簇中的大多数仅包含2个基因,它们的共表达可能是由于转录通读或双向启动子的活性。

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