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主动伸出:细菌膜延伸代表了对多糖感知和利用的永久性投资。

Reaching out in anticipation: bacterial membrane extensions represent a permanent investment in polysaccharide sensing and utilization.

机构信息

Pharmaceutical Biotechnology, Institute of Pharmacy, University Greifswald, Greifswald, 17487, Germany.

Institute of Marine Biotechnology, Greifswald, 17489, Germany.

出版信息

Environ Microbiol. 2021 Jun;23(6):3149-3163. doi: 10.1111/1462-2920.15537. Epub 2021 May 6.

Abstract

Outer membrane extensions are common in many marine bacteria. However, the function of these surface enlargements or extracellular compartments is poorly understood. Using a combined approach of microscopy and subproteome analyses, we therefore examined Pseudoalteromonas distincta ANT/505, an Antarctic polysaccharide degrading gamma-proteobacterium. P. distincta produced outer membrane vesicles (MV) and vesicle chains (VC) on polysaccharide and non-polysaccharide carbon sources during the exponential and stationary growth phase. Surface structures of carbohydrate-grown cells were equipped with increased levels of highly substrate-specific proteins. At the same time, proteins encoded in all other polysaccharide degradation-related genomic regions were also detected in MV and VC samples under all growth conditions, indicating a basal expression. In addition, two alkaline phosphatases were highly abundant under non-limiting phosphate conditions. Surface structures may thus allow rapid sensing and fast responses in nutritionally deprived environments. It may also facilitate efficient carbohydrate processing and reduce loss of substrates and enzymes by diffusion as important adaptions to the aquatic ecosystem.

摘要

外膜延伸在许多海洋细菌中很常见。然而,这些表面扩大或细胞外隔室的功能知之甚少。因此,我们使用显微镜和亚蛋白质组分析相结合的方法,研究了南极多糖降解γ-变形菌假交替单胞菌 ANT/505。假交替单胞菌在多糖和非多糖碳源的指数和静止生长阶段产生外膜囊泡(MV)和囊泡链(VC)。碳水化合物生长细胞的表面结构配备了更高水平的高度底物特异性蛋白。与此同时,在所有生长条件下,MV 和 VC 样本中还检测到所有多糖降解相关基因组区域编码的蛋白质,表明存在基础表达。此外,两种碱性磷酸酶在非限制磷条件下含量很高。因此,表面结构可以在营养匮乏的环境中快速感知和快速反应。它还可以促进有效的碳水化合物加工,并通过扩散减少底物和酶的损失,这是对水生生态系统的重要适应。

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