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The dlt operon confers resistance to cationic antimicrobial peptides in Clostridium difficile

机译:dlt操纵子赋予艰难梭菌中的阳离子抗菌肽耐药性

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摘要

The dlt operon in Gram-positive bacteria encodes proteins that are necessary for the addition of d-alanine to teichoic acids of the cell wall. The addition of d-alanine to the cell wall results in a net positive charge on the bacterial cell surface and, as a consequence, can decrease the effectiveness of antimicrobials, such as cationic antimicrobial peptides (CAMPs). Although the roles of the dlt genes have been studied for some Gram-positive organisms, the arrangement of these genes in Clostridium difficile and the life cycle of the bacterium in the host are markedly different from those of other pathogens. In the current work, we determined the contribution of the putative C. difficile dlt operon to CAMP resistance. Our data indicate that the dlt operon is necessary for full resistance of C. difficile to nisin, gallidermin, polymyxin B and vancomycin. We propose that the d-alanylation of teichoic acids provides protection against antimicrobial peptides that may be essential for growth of C. difficile in the host.
机译:革兰氏阳性细菌中的dlt操纵子编码将d-丙氨酸添加到细胞壁的壁酸中所必需的蛋白质。向细胞壁中添加d-丙氨酸会在细菌细胞表面产生净正电荷,因此会降低抗微生物剂(如阳离子抗微生物肽(CAMPs))的有效性。尽管已经针对某些革兰氏阳性生物体研究了dlt基因的作用,但是这些基因在艰难梭菌中的排列以及细菌在宿主中的生命周期与其他病原体明显不同。在当前的工作中,我们确定了假定的艰难梭菌dlt操纵子对CAMP抗性的贡献。我们的数据表明,dlt操纵子是艰难梭菌完全耐受乳链菌肽,盖德明,多粘菌素B和万古霉素所必需的。我们建议,techochoic acid的d-丙氨酰化提供针对可能对宿主中艰难梭菌的生长必不可少的抗菌肽的保护。

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