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人类全基因组 WD40 蛋白家族分析

Genome-wide Analysis of WD40 Protein Family in Human.

机构信息

Lab of Computational Chemistry and Drug Design, Laboratory of Chemical Genomics, Peking University Shenzhen Graduate School, Shenzhen 518055, P. R. China.

College of Chemistry, Peking University, Beijing, 100871, P. R. China.

出版信息

Sci Rep. 2016 Dec 19;6:39262. doi: 10.1038/srep39262.

Abstract

The WD40 proteins, often acting as scaffolds to form functional complexes in fundamental cellular processes, are one of the largest families encoded by the eukaryotic genomes. Systematic studies of this family on genome scale are highly required for understanding their detailed functions, but are currently lacking in the animal lineage. Here we present a comprehensive in silico study of the human WD40 family. We have identified 262 non-redundant WD40 proteins, and grouped them into 21 classes according to their domain architectures. Among them, 11 animal-specific domain architectures have been recognized. Sequence alignment indicates the complicated duplication and recombination events in the evolution of this family. Through further phylogenetic analysis, we have revealed that the WD40 family underwent more expansion than the overall average in the evolutionary early stage, and the early emerged WD40 proteins are prone to domain architectures with fundamental cellular roles and more interactions. While most widely and highly expressed human WD40 genes originated early, the tissue-specific ones often have late origin. These results provide a landscape of the human WD40 family concerning their classification, evolution, and expression, serving as a valuable complement to the previous studies in the plant lineage.

摘要

WD40 蛋白通常作为支架,在基本细胞过程中形成功能性复合物,是真核生物基因组编码的最大家族之一。系统研究这个家族在基因组范围内的功能对于理解其详细功能非常重要,但目前在动物谱系中缺乏相关研究。本文对人类 WD40 家族进行了全面的计算机研究。我们鉴定了 262 个非冗余 WD40 蛋白,并根据它们的结构域结构将其分为 21 类。其中,识别出了 11 种动物特有的结构域结构。序列比对表明,该家族在进化过程中经历了复杂的重复和重组事件。通过进一步的系统发育分析,我们揭示了 WD40 家族在进化早期的扩张速度超过了总体平均水平,早期出现的 WD40 蛋白更容易具有基本细胞功能和更多相互作用的结构域。虽然大多数广泛和高度表达的人类 WD40 基因起源较早,但组织特异性基因通常起源较晚。这些结果提供了人类 WD40 家族的分类、进化和表达全景,为植物谱系中的先前研究提供了有价值的补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a32/5172248/47c2d1fdb574/srep39262-f1.jpg

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