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肺炎支原体末端细胞器的结构、功能及组装

Structure, function, and assembly of the terminal organelle of Mycoplasma pneumoniae.

作者信息

Krause D C, Balish M F

机构信息

Department of Microbiology, University of Georgia, Athens, GA 30602, USA.

出版信息

FEMS Microbiol Lett. 2001 Apr 20;198(1):1-7. doi: 10.1111/j.1574-6968.2001.tb10610.x.

Abstract

Mycoplasmas are cell wall-less bacteria at the low extreme in genome size in the known prokaryote world, and the minimal nature of their genomes is clearly reflected in their metabolic and regulatory austerity. Despite this apparent simplicity, certain species such as Mycoplasma pneumoniae possess a complex terminal organelle that functions in cytadherence, gliding motility, and cell division. The attachment organelle is a membrane-bound extension of the cell and is characterized by an electron-dense core that is part of the mycoplasma cytoskeleton, defined here for working purposes as the protein fraction that remains after extraction with the detergent Triton X-100. This review focuses on the architecture and assembly of the terminal organelle of M. pneumoniae. Characterizing the downstream consequences of defects involving attachment organelle components has made it possible to begin to elucidate the probable sequence of certain events in the biogenesis of this structure.

摘要

支原体是已知原核生物世界中基因组大小处于最低极端的无细胞壁细菌,其基因组的极简性质明显体现在它们代谢和调控的简约性上。尽管看似简单,但某些物种,如肺炎支原体,拥有一个复杂的末端细胞器,该细胞器在细胞粘附、滑行运动和细胞分裂中发挥作用。附着细胞器是细胞的膜结合延伸部分,其特征是有一个电子致密核心,它是支原体细胞骨架的一部分,在此为便于研究将其定义为用去污剂Triton X-100提取后残留的蛋白质部分。本综述聚焦于肺炎支原体末端细胞器的结构和组装。对涉及附着细胞器成分缺陷的下游后果进行表征,使得开始阐明该结构生物发生过程中某些事件的可能顺序成为可能。

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