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古菌中的机械敏感通道。

Mechanosensitive channels in archaea.

作者信息

Kloda A, Martinac B

机构信息

Department of Pharmacology, University of Western Australia, Nedlands, Australia.

出版信息

Cell Biochem Biophys. 2001;34(3):349-81. doi: 10.1385/CBB:34:3:349.

Abstract

The ubiquity of mechanosensitive (MS) channels triggered a search for their functional homologues in Archaea, the third domain of the phylogenetic tree. Two types of MS channels have been identified in the cell membranes of Haloferax volcanii using the patch clamp technique. Recently MS channels were identified and cloned from two archaeal species occupying different environmental habitats. These studies demonstrate that archaeal MS channels share structural and functional homology with bacterial MS channels. The mechanical force transmitted via the lipid bilayer alone activates all to date known prokaryotic MS channels. This implies the existence of a common gating mechanism for bacterial as well as archaeal MS channels according to the bilayer model. Based on recent evidence that the bilayer model also applies to eukaryotic MS channels, mechanosensory transduction probably originated along with the appearance of the first life forms according to simple biophysical principles. In support of this hypothesis the phylogenetic analysis revealed that prokaryotic MS channels of large and small conductance originated from a common ancestral molecule resembling the bacterial MscL channel protein. Furthemore, bacterial and archaeal MS channels share common structural motifs with eukaryotic channels of diverse function indicating the importance of identified structures to the gating mechanism of this family of channels. The comparative approach used throughout this review should contribute towards understanding of the evolution and molecular basis of mechanosensory transduction in general.

摘要

机械敏感(MS)通道的广泛存在促使人们在系统发育树的第三个域——古菌中寻找它们的功能同源物。利用膜片钳技术,在嗜盐嗜碱菌的细胞膜中鉴定出了两种类型的MS通道。最近,从占据不同环境栖息地的两种古菌物种中鉴定并克隆出了MS通道。这些研究表明,古菌MS通道与细菌MS通道在结构和功能上具有同源性。仅通过脂质双分子层传递的机械力就能激活迄今为止所有已知的原核生物MS通道。根据双分子层模型,这意味着细菌和古菌MS通道存在共同的门控机制。基于最近的证据表明双分子层模型也适用于真核生物MS通道,根据简单的生物物理原理,机械感觉转导可能与第一种生命形式的出现同时起源。为支持这一假设,系统发育分析表明,大小电导的原核生物MS通道起源于一个类似于细菌MscL通道蛋白的共同祖先分子。此外,细菌和古菌MS通道与功能多样的真核生物通道共享共同的结构基序,这表明已鉴定的结构对该通道家族的门控机制很重要。本综述中使用的比较方法总体上应有助于理解机械感觉转导的进化和分子基础。

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