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后生动物通过从可溶性蛋白质获取结构域来扩展细胞间通讯网络而进化。

Metazoans evolved by taking domains from soluble proteins to expand intercellular communication network.

作者信息

Nam Hyun-Jun, Kim Inhae, Bowie James U, Kim Sanguk

机构信息

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, Pohang, 790-784, Korea.

Department of Life Sciences, Pohang University of Science and Technology, Pohang, 790-784, Korea.

出版信息

Sci Rep. 2015 Apr 29;5:9576. doi: 10.1038/srep09576.

Abstract

A central question in animal evolution is how multicellular animals evolved from unicellular ancestors. We hypothesize that membrane proteins must be key players in the development of multicellularity because they are well positioned to form the cell-cell contacts and to provide the intercellular communication required for the creation of complex organisms. Here we find that a major mechanism for the necessary increase in membrane protein complexity in the transition from non-metazoan to metazoan life was the new incorporation of domains from soluble proteins. The membrane proteins that have incorporated soluble domains in metazoans are enriched in many of the functions unique to multicellular organisms such as cell-cell adhesion, signaling, immune defense and developmental processes. They also show enhanced protein-protein interaction (PPI) network complexity and centrality, suggesting an important role in the cellular diversification found in complex organisms. Our results expose an evolutionary mechanism that contributed to the development of higher life forms.

摘要

动物进化中的一个核心问题是多细胞动物如何从单细胞祖先进化而来。我们推测膜蛋白必定是多细胞性发育过程中的关键参与者,因为它们处于形成细胞间接触以及提供创建复杂生物体所需的细胞间通讯的有利位置。在此我们发现,从非后生动物生命向后生动物生命转变过程中,膜蛋白复杂性必然增加的一个主要机制是可溶性蛋白结构域的新纳入。后生动物中已纳入可溶性结构域的膜蛋白在多细胞生物独有的许多功能中富集,如细胞间粘附、信号传导、免疫防御和发育过程。它们还显示出增强的蛋白质 - 蛋白质相互作用(PPI)网络复杂性和中心性,表明在复杂生物体中的细胞多样化中起重要作用。我们的结果揭示了一种有助于高等生命形式发展的进化机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e57/4894438/d926ec347f2f/srep09576-f1.jpg

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