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鞘氨醇单胞菌A1的特殊细胞表面结构及新型大分子运输/解聚系统

Special cell surface structure, and novel macromolecule transport/depolymerization system of Sphingomonas sp A1.

作者信息

Momma K, Hashimoto W, Miyake O, Yoon H-J, Kawai S, Mishima Y, Mikami B, Murata K

机构信息

Research Institute for Food Science, Kyoto University, Uji 611-0011, Japan.

出版信息

J Ind Microbiol Biotechnol. 1999 Oct;23(4-5):425-435. doi: 10.1038/sj.jim.2900719.

Abstract

A bacterium isolated from soil as an alginate lyase producer shows characteristic morphological and taxonomical properties consistent with being classified in the genus Sphingomonas. The bacterium utilizes high molecular weight (HMW)-alginate for growth by depolymerization of the polymer with intracellular alginate lyases, which are generated from a common precursor protein through autoregulated post-translational modifications. Electron microscopic observations of the cell surface and of thin sections of cells grown on HMW-alginate revealed dynamic changes in both cell surface and membrane structures. The most remarkable change is recognized in the formation of mouth-like pits which open and close depending on the presence or absence of HMW-alginate. Enzymatic and genetic analyses of HMW-alginate incorporation processes confirmed the presence of a pit-dependent and macromolecule-specific ABC transporter system in cells of Sphingomonas species A1. This is the first description of a bacterium with a pit on the cell surface and a pit-dependent endocytosic uptake system for macromolecules.

摘要

从土壤中分离出的一种作为海藻酸裂合酶产生菌的细菌,具有与鞘氨醇单胞菌属分类一致的特征性形态和分类学特性。该细菌通过利用细胞内海藻酸裂合酶将高分子量(HMW)-海藻酸聚合物解聚来实现生长,这些酶由一种共同的前体蛋白通过自动调节的翻译后修饰产生。对细胞表面以及在HMW-海藻酸上生长的细胞薄片的电子显微镜观察揭示了细胞表面和膜结构的动态变化。最显著的变化是形成了类似嘴巴的凹坑,这些凹坑根据HMW-海藻酸的有无而开合。对HMW-海藻酸掺入过程的酶学和遗传学分析证实,鞘氨醇单胞菌A1种的细胞中存在一种依赖凹坑且对大分子具有特异性的ABC转运系统。这是首次描述一种在细胞表面有凹坑且具有依赖凹坑的大分子内吞摄取系统的细菌。

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