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对于枯草芽孢杆菌菌落生物膜结构而言,大多数基质蛋白TapA并非必需。

The majority of the matrix protein TapA is dispensable for Bacillus subtilis colony biofilm architecture.

作者信息

Earl Chris, Arnaouteli Sofia, Bamford Natalie C, Porter Michael, Sukhodub Tetyana, MacPhee Cait E, Stanley-Wall Nicola R

机构信息

Division of Molecular Microbiology, School of Life Sciences, University of Dundee, Dundee, UK.

James Clerk Maxwell Building, School of Physics, University of Edinburgh, Edinburgh, UK.

出版信息

Mol Microbiol. 2020 Dec;114(6):920-933. doi: 10.1111/mmi.14559. Epub 2020 Jun 21.

Abstract

Biofilm formation is a co-operative behaviour, where microbial cells become embedded in an extracellular matrix. This biomolecular matrix helps manifest the beneficial or detrimental outcome mediated by the collective of cells. Bacillus subtilis is an important bacterium for understanding the principles of biofilm formation. The protein components of the B. subtilis matrix include the secreted proteins BslA, which forms a hydrophobic coat over the biofilm, and TasA, which forms protease-resistant fibres needed for structuring. TapA is a secreted protein also needed for biofilm formation and helps in vivo TasA-fibre formation but is dispensable for in vitro TasA-fibre assembly. We show that TapA is subjected to proteolytic cleavage in the colony biofilm and that only the first 57 amino acids of the 253-amino acid protein are required for colony biofilm architecture. Through the construction of a strain which lacks all eight extracellular proteases, we show that proteolytic cleavage by these enzymes is not a prerequisite for TapA function. It remains unknown why TapA is synthesised at 253 amino acids when the first 57 are sufficient for colony biofilm structuring; the findings do not exclude the core conserved region of TapA having a second role beyond structuring the B. subtilis colony biofilm.

摘要

生物膜形成是一种合作行为,微生物细胞会嵌入细胞外基质中。这种生物分子基质有助于展现由细胞群体介导的有益或有害结果。枯草芽孢杆菌是理解生物膜形成原理的重要细菌。枯草芽孢杆菌基质的蛋白质成分包括分泌蛋白BslA,它在生物膜上形成疏水涂层;还有TasA,它形成构建所需的抗蛋白酶纤维。TapA是生物膜形成也需要的一种分泌蛋白,有助于体内TasA纤维的形成,但对于体外TasA纤维组装来说并非必需。我们发现TapA在菌落生物膜中会发生蛋白水解切割,并且对于菌落生物膜结构而言,253个氨基酸的蛋白质中仅前57个氨基酸是必需的。通过构建一种缺乏所有八种细胞外蛋白酶的菌株,我们表明这些酶的蛋白水解切割不是TapA发挥功能的先决条件。目前尚不清楚为何TapA合成时是253个氨基酸,而前57个氨基酸就足以构建枯草芽孢杆菌菌落生物膜;这些发现并不排除TapA的核心保守区域在构建枯草芽孢杆菌菌落生物膜之外还有第二个作用。

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