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Relating protein functional diversity to cell type number identifies genes that determine dynamic aspects of chromatin organisation as potential contributors to organismal complexity

机译:将蛋白质功能多样性与细胞类型编号相关联,可确定决定染色质组织动态方面的基因,这可能是机体复杂性的潜在原因

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摘要

Organismal complexity broadly relates to the number of different cell types within an organism and generally increases across a phylogeny. Whilst gene expression will underpin organismal complexity, it has long been clear that a simple count of gene number is not a sufficient explanation. In this paper, we use open-access information from the Ensembl databases to quantify the functional diversity of human genes that are broadly involved in transcription. Functional diversity is described in terms of the numbers of paralogues, protein isoforms and structural domains for each gene. The change in functional diversity is then calculated for up to nine orthologues from the nematode worm to human and correlated to the change in cell-type number. Those with the highest correlation are subject to gene ontology term enrichment and interaction analyses. We found that a range of genes that encode proteins associated with dynamic changes to chromatin are good candidates to contribute to organismal complexity.
机译:有机体复杂性广泛地涉及生物体内不同细胞类型的数量,并且通常在整个系统发育中都会增加。尽管基因表达将支持机体的复杂性,但很显然,简单的基因数目计数不足以解释这一点。在本文中,我们使用来自Ensembl数据库的开放访问信息来量化广泛参与转录的人类基因的功能多样性。根据每个基因的旁系同源物,蛋白质同工型和结构域的数量来描述功能多样性。然后计算从线虫到人的多达9个直系同源物的功能多样性变化,并与细胞类型数量的变化相关。相关性最高的那些基因将进行基因本体项的富集和相互作用分析。我们发现,编码与染色质动态变化相关的蛋白质的一系列基因是有助于机体复杂性的良好候选者。

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