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整合素介导的黏附与信号传导机制的古老起源。

Ancient origin of the integrin-mediated adhesion and signaling machinery.

作者信息

Sebé-Pedrós Arnau, Roger Andrew J, Lang Franz B, King Nicole, Ruiz-Trillo Iñaki

机构信息

Departament de Genètica and Institut de Recerca en Biodiversitat, Universitat de Barcelona, 08028 Barcelona, Spain.

出版信息

Proc Natl Acad Sci U S A. 2010 Jun 1;107(22):10142-7. doi: 10.1073/pnas.1002257107. Epub 2010 May 17.

Abstract

The evolution of animals (metazoans) from their unicellular ancestors required the emergence of novel mechanisms for cell adhesion and cell-cell communication. One of the most important cell adhesion mechanisms for metazoan development is integrin-mediated adhesion and signaling. The integrin adhesion complex mediates critical interactions between cells and the extracellular matrix, modulating several aspects of cell physiology. To date this machinery has been considered strictly metazoan specific. Here we report the results of a comparative genomic analysis of the integrin adhesion machinery, using genomic data from several unicellular relatives of Metazoa and Fungi. Unexpectedly, we found that core components of the integrin adhesion complex are encoded in the genome of the apusozoan protist Amastigomonas sp., and therefore their origins predate the divergence of Opisthokonta, the clade that includes metazoans and fungi. Furthermore, our analyses suggest that key components of this apparatus have been lost independently in fungi and choanoflagellates. Our data highlight the fact that many of the key genes that had formerly been cited as crucial for metazoan origins have a much earlier origin. This underscores the importance of gene cooption in the unicellular-to-multicellular transition that led to the emergence of the Metazoa.

摘要

动物(后生动物)从其单细胞祖先进化而来,需要出现新的细胞黏附及细胞间通讯机制。后生动物发育过程中最重要的细胞黏附机制之一是整合素介导的黏附与信号传导。整合素黏附复合体介导细胞与细胞外基质之间的关键相互作用,调节细胞生理学的多个方面。迄今为止,这种机制一直被认为是后生动物特有的。在此,我们利用来自后生动物和真菌的几种单细胞亲缘生物的基因组数据,报告了整合素黏附机制的比较基因组分析结果。出乎意料的是,我们发现整合素黏附复合体的核心成分在顶复合门原生生物无鞭毛单胞菌(Amastigomonas sp.)的基因组中编码,因此它们的起源早于包括后生动物和真菌在内的后鞭毛生物分支的分化。此外,我们的分析表明,该机制的关键成分在真菌和领鞭毛虫中独立丢失。我们的数据突出了这样一个事实,即许多以前被认为对后生动物起源至关重要的关键基因起源要早得多。这强调了基因共选在导致后生动物出现的单细胞到多细胞转变中的重要性。

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Ancient origin of the integrin-mediated adhesion and signaling machinery.整合素介导的黏附与信号传导机制的古老起源。
Proc Natl Acad Sci U S A. 2010 Jun 1;107(22):10142-7. doi: 10.1073/pnas.1002257107. Epub 2010 May 17.

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