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首页> 外文期刊>Journal of bacteriology >YuaB Functions Synergistically with the Exopolysaccharide and TasA Amyloid Fibers To Allow Biofilm Formation by Bacillus subtilis
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YuaB Functions Synergistically with the Exopolysaccharide and TasA Amyloid Fibers To Allow Biofilm Formation by Bacillus subtilis

机译:YuaB与胞外多糖和TasA淀粉样蛋白纤维协同作用,以允许枯草芽孢杆菌形成生物膜

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During biofilm formation by Bacillus subtilis, two extracellular matrix components are synthesized, namely, the TasA amyloid fibers and an exopolysaccharide. In addition, a small protein called YuaB has been shown to allow the biofilm to form. The regulatory protein DegU is known to initiate biofilm formation. In this report we show that the main role of DegU during biofilm formation is to indirectly drive the activation of transcription from the yuaB promoter. The N terminus of YuaB constitutes a signal peptide for the Sec transport system. Here we show that the presence of the signal peptide is required for YuaB function. In addition we demonstrate that upon export of YuaB from the cytoplasm, it localizes to the cell wall. We continue with evidence that increased production of TasA and the exopolysaccharide is not sufficient to overcome the effects of a mutation in yuaB, demonstrating the unique involvement of YuaB in forming a biofilm. In line with this, YuaB is not involved in correct synthesis, export, or polymerization of either the TasA amyloid fibers or the exopolysaccharide. Taken together, these findings identify YuaB as a protein that plays a novel role during biofilm formation. We hypothesize that YuaB functions synergistically with the known components of the biofilm matrix to facilitate the assembly of the biofilm matrix.
机译:在枯草芽孢杆菌形成生物膜的过程中,合成了两种细胞外基质成分,即TasA淀粉样蛋白纤维和胞外多糖。此外,一种名为YuaB的小蛋白质已显示可以形成生物膜。已知调节蛋白DegU启动生物膜形成。在此报告中,我们表明DegU在生物膜形成过程中的主要作用是间接驱动 yuaB 启动子的转录激活。 YuaB的N端构成Sec转运系统的信号肽。在这里,我们表明YuaB功能需要信号肽的存在。此外,我们证明了YuaB从细胞质中输出后,它会定位在细胞壁上。我们继续提供证据,证明增加TasA和胞外多糖的产量不足以克服 yuaB 中突变的影响,这表明YuaB在形成生物膜中的独特作用。与此相符,YuaB不参与TasA淀粉样蛋白纤维或胞外多糖的正确合成,输出或聚合。综上所述,这些发现确定了YuaB是一种在生物膜形成过程中扮演着新角色的蛋白质。我们假设YuaB与生物膜基质的已知成分具有协同作用,以促进生物膜基质的组装。

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