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Clostridium difficile surface proteins are anchored to the cell wall using CWB2 motifs that recognise the anionic polymer PSII

机译:使用识别阴离子聚合物psII的CWB2基序将艰难梭菌表面蛋白锚定在细胞壁上

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摘要

Gram-positive surface proteins can be covalently or non-covalently anchored to the cell wall and can impart important properties on the bacterium in respect of cell envelope organisation and interaction with the environment. We describe here a mechanism of protein anchoring involving tandem CWB2 motifs found in a large number of cell wall proteins in the Firmicutes. In the Clostridium difficile cell wall protein family, we show the three tandem repeats of the CWB2 motif are essential for correct anchoring to the cell wall. CWB2 repeats are non-identical and cannot substitute for each other, as shown by the secretion into the culture supernatant of proteins containing variations in the patterns of repeats. A conserved Ile Leu Leu sequence within the CWB2 repeats is essential for correct anchoring, although a preceding proline residue is dispensable. We propose a likely genetic locus encoding synthesis of the anionic polymer PSII and, using RNA knock-down of key genes, reveal subtle effects on cell wall composition. We show that the anionic polymer PSII binds two cell wall proteins, SlpA and Cwp2, and these interactions require the CWB2 repeats, defining a new mechanism of protein anchoring in Gram-positive bacteria.
机译:革兰氏阳性表面蛋白可以共价或非共价锚定在细胞壁上,并且在细胞包膜组织和与环境的相互作用方面可以赋予细菌重要的性能。我们在这里描述了涉及在Firmicutes中的大量细胞壁蛋白中发现的串联CWB2基序的蛋白锚固机制。在艰难梭菌细胞壁蛋白家族中,我们显示CWB2基序的三个串联重复对于正确锚定至细胞壁必不可少。 CWB2重复序列是不同的,不能互相替代,如在重复序列模式中含有变异蛋白的蛋白质分泌到培养上清液中所示。 CWB2重复序列中保守的Ile Leu Leu序列对于正确锚固至关重要,尽管前面的脯氨酸残基是可有可无的。我们提出了一个可能的遗传基因座,编码阴离子聚合物PSII的合成,并利用RNA击倒关键基因揭示了对细胞壁组成的微妙影响。我们表明,阴离子聚合物PSII结合两个细胞壁蛋白SlpA和Cwp2,这些相互作用需要CWB2重复,从而定义了革兰氏阳性细菌中蛋白质锚定的新机制。

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