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由热球菌属的嗜热古菌产生的膜泡、纳米足和/或纳米管。

Membrane vesicles, nanopods and/or nanotubes produced by hyperthermophilic archaea of the genus Thermococcus.

机构信息

Institut de Génétique et Microbiologie, Université Paris-Sud, CNRS UMR8621, 91405 Orsay Cedex, France.

出版信息

Biochem Soc Trans. 2013 Feb 1;41(1):436-42. doi: 10.1042/BST20120293.

Abstract

Thermococcus species produce MVs (membrane vesicles) into their culture medium. These MVs are formed by a budding process from the cell envelope, similar to ectosome formation in eukaryotic cells. The major protein present in MVs of Thermococci is a peptide-binding receptor of the OppA (oligopeptide-binding protein A) family. In addition, some of them contain a homologue of stomatin, a universal membrane protein involved in vesiculation. MVs produced by Thermococcus species can recruit endogenous or exogenous plasmids and plasmid transfer through MVs has been demonstrated in Thermococcus kodakaraensis. MVs are frequently secreted in clusters surrounded by S-layer, producing either big protuberances (nanosphere) or tubular structures (nanotubes). Thermococcus gammatolerans and T. kodakaraensis produce nanotubes containing strings of MVs, resembling the recently described nanopods in bacteria, whereas Thermococcus sp. 5-4 produces filaments whose internal membrane is continuous. These nanotubes can bridge neighbouring cells, forming cellular networks somehow resembling nanotubes recently observed in Firmicutes. As suggested for bacteria, archaeal nanopods and/or nanotubes could be used to expand the metabolic sphere around cells and/or to promote intercellular communication.

摘要

热球菌属会将 MV(膜泡)分泌到培养基中。这些 MV 通过出芽过程从细胞膜形成,类似于真核细胞中胞外体的形成。热球菌 MV 中主要的蛋白质是一种寡肽结合蛋白 A(OppA)家族的肽结合受体。此外,其中一些含有 stomatin 的同源物,这是一种参与囊泡形成的通用膜蛋白。热球菌属产生的 MV 可以招募内源性或外源性质粒,并且已经在嗜热球菌(Thermococcus kodakaraensis)中证明了通过 MV 进行质粒转移。MV 经常成群分泌,周围有 S-层,形成大的突起(纳米球)或管状结构(纳米管)。γ-耐受热球菌(Thermococcus gammatolerans)和嗜热球菌(Thermococcus kodakaraensis)产生含有 MV 串的纳米管,类似于最近在细菌中描述的纳米足,而热球菌(Thermococcus sp. 5-4)产生的纤维内部膜是连续的。这些纳米管可以桥接相邻的细胞,形成某种类似于最近在厚壁菌门中观察到的纳米管的细胞网络。正如细菌中所提出的,古菌纳米足和/或纳米管可以用于扩大细胞周围的代谢范围和/或促进细胞间通讯。

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