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从酸性矿山排水微生物群落中鉴定生物膜基质相关蛋白。

Identification of biofilm matrix-associated proteins from an acid mine drainage microbial community.

机构信息

Physical and Life Sciences, LLNL, 7000 East Ave, L-452, Livermore, CA 94550, USA.

出版信息

Appl Environ Microbiol. 2011 Aug;77(15):5230-7. doi: 10.1128/AEM.03005-10. Epub 2011 Jun 17.

DOI:10.1128/AEM.03005-10
PMID:21685158
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3147463/
Abstract

In microbial communities, extracellular polymeric substances (EPS), also called the extracellular matrix, provide the spatial organization and structural stability during biofilm development. One of the major components of EPS is protein, but it is not clear what specific functions these proteins contribute to the extracellular matrix or to microbial physiology. To investigate this in biofilms from an extremely acidic environment, we used shotgun proteomics analyses to identify proteins associated with EPS in biofilms at two developmental stages, designated DS1 and DS2. The proteome composition of the EPS was significantly different from that of the cell fraction, with more than 80% of the cellular proteins underrepresented or undetectable in EPS. In contrast, predicted periplasmic, outer membrane, and extracellular proteins were overrepresented by 3- to 7-fold in EPS. Also, EPS proteins were more basic by ∼2 pH units on average and about half the length. When categorized by predicted function, proteins involved in motility, defense, cell envelope, and unknown functions were enriched in EPS. Chaperones, such as histone-like DNA binding protein and cold shock protein, were overrepresented in EPS. Enzymes, such as protein peptidases, disulfide-isomerases, and those associated with cell wall and polysaccharide metabolism, were also detected. Two of these enzymes, identified as β-N-acetylhexosaminidase and cellulase, were confirmed in the EPS fraction by enzymatic activity assays. Compared to the differences between EPS and cellular fractions, the relative differences in the EPS proteomes between DS1 and DS2 were smaller and consistent with expected physiological changes during biofilm development.

摘要

在微生物群落中,细胞外多聚物(EPS),也称为细胞外基质,在生物膜发育过程中提供空间组织和结构稳定性。EPS 的主要成分之一是蛋白质,但这些蛋白质对细胞外基质或微生物生理学有何具体作用尚不清楚。为了在来自极酸性环境的生物膜中研究这一点,我们使用鸟枪法蛋白质组学分析来鉴定生物膜在两个发育阶段(分别命名为 DS1 和 DS2)中与 EPS 相关的蛋白质。EPS 的蛋白质组组成与细胞部分明显不同,细胞部分中超过 80%的蛋白质在 EPS 中被代表或无法检测到。相比之下,预测的周质、外膜和细胞外蛋白质在 EPS 中被代表了 3 到 7 倍。此外,EPS 蛋白的平均平均碱性增加了约 2 个 pH 单位,且平均长度减少了一半。按预测功能分类时,与运动性、防御、细胞包膜和未知功能相关的蛋白质在 EPS 中富集。伴侣蛋白,如组蛋白样 DNA 结合蛋白和冷休克蛋白,在 EPS 中被过度代表。还检测到酶,如蛋白酶、二硫键异构酶和与细胞壁和多糖代谢相关的酶。这两种酶,鉴定为β-N-乙酰己糖胺酶和纤维素酶,通过酶活性测定在 EPS 部分中得到了确认。与 EPS 和细胞部分之间的差异相比,DS1 和 DS2 之间 EPS 蛋白质组的相对差异较小,并且与生物膜发育过程中的预期生理变化一致。

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