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丙酸杆菌属 secretome 分析揭示了即使是密切相关的菌株之间也存在高度可变的反应。

Secretome profiling of Propionibacterium freudenreichii reveals highly variable responses even among the closely related strains.

机构信息

Department of Food and Environmental Sciences, University of Helsinki, Helsinki 00014, Finland.

Department of Immunology, Institute of Clinical Medicine, University of Oslo, 0424 Oslo, Norway.

出版信息

Microb Biotechnol. 2018 May;11(3):510-526. doi: 10.1111/1751-7915.13254. Epub 2018 Feb 28.

Abstract

This study compared the secretomes (proteins exported out of the cell) of Propionibacterium freudenreichii of different origin to identify plausible adaptation factors. Phylosecretomics indicated strain-specific variation in secretion of adhesins/invasins (SlpA, InlA), cell-wall hydrolysing (NlpC60 peptidase, transglycosylase), protective (RpfB) and moonlighting (DnaK, GroEL, GaPDH, IDH, ENO, ClpB) enzymes and/or proteins. Detailed secretome comparison suggested that one of the cereal strains (JS14) released a tip fimbrillin (FimB) in to the extracellular milieu, which was in line with the electron microscopy and genomic analyses, indicating the lack of surface-associated fimbrial-like structures, predicting a mutated type-2 fimbrial gene cluster (fimB-fimA-srtC2) and production of anchorless FimB. Instead, the cereal strain produced high amounts of SlpB that tentatively mediated adherent growth on hydrophilic surface and adherence to hydrophobic material. One of the dairy strains (JS22), producing non-covalently bound surface-proteins (LspA, ClpB, AraI) and releasing SlpA and InlA into the culture medium, was found to form clumps under physiological conditions. The JS22 strain lacked SlpB and displayed a non-clumping and biofilm-forming phenotype only under conditions of increased ionic strength (300 mM NaCl). However, this strain cultured under the same conditions was not adherent to hydrophobic support, which supports the contributory role of SlpB in mediating hydrophobic interactions. Thus, this study reports significant secretome variation in P. freudenreichii and suggests that strain-specific differences in protein export, modification and protein-protein interactions have been the driving forces behind the adaptation of this bacterial species.

摘要

本研究比较了不同来源的丙酸杆菌的分泌组(细胞外分泌的蛋白质),以鉴定可能的适应因子。 phylosecretomics 表明,黏附素/侵袭素(SlpA、InlA)、细胞壁水解(NlpC60 肽酶、转糖基酶)、保护(RpfB)和月光蛋白(DnaK、GroEL、GaPDH、IDH、ENO、ClpB)酶和/或蛋白质的分泌存在菌株特异性变异。详细的分泌组比较表明,其中一种谷物菌株(JS14)将一种尖端菌毛蛋白(FimB)释放到细胞外环境中,这与电子显微镜和基因组分析一致,表明缺乏表面相关的菌毛样结构,预测突变型 2 型菌毛基因簇(fimB-fimA-srtC2)和无锚定 FimB 的产生。相反,谷物菌株产生大量的 SlpB,推测它介导在亲水表面上的黏附生长和对疏水性物质的黏附。其中一种乳制品菌株(JS22),产生非共价结合的表面蛋白(LspA、ClpB、AraI),并将 SlpA 和 InlA 释放到培养基中,在生理条件下发现形成团块。JS22 菌株缺乏 SlpB,并且仅在离子强度增加(300 mM NaCl)的条件下显示非团块和生物膜形成表型。然而,在相同条件下培养的这种菌株对疏水性载体不具有黏附性,这支持 SlpB 在介导疏水性相互作用中的贡献作用。因此,本研究报道了丙酸杆菌分泌组的显著变化,并表明菌株特异性的蛋白质外排、修饰和蛋白质-蛋白质相互作用的差异是该细菌物种适应的驱动力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0edd/5902329/24589fe65f1f/MBT2-11-510-g001.jpg

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