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Competence-programmed predation of noncompletent cells in the human pathogen Streptococcus pneumoniae: Genetic requirements

机译:人类病原体肺炎链球菌中不完全细胞的能力程序捕食:遗传要求

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Natural competence for genetic transformation is the best-characterized feature of the major human pathogen Streptococcus pneumoniae. Recent studies have shown the virulence of competence-deficient mutants to be attenuated, but the nature of the connection between competence and virulence remained unknown. Here we document the release, triggered by competent cells, of virulence factors (e.g., the cytolytic toxin pneumolysin) from noncompetent cells. This phenomenon, which we name allolysis, involves a previously undescribed bacteriocin system consisting of a two-peptide bacteriocin, CibAB, and its immunity factor, CibC; the major autolysin, LytA, and lysozyme, LytC; and a proposed new amidase, CbpD. We show that CibAB are absolutely required for allolysis, whereas LytA and LytC can be supplied either by the competent cells or by the targeted cells. We propose that allolysis constitutes a competence-programmed mechanism of predation of noncompetent cells, which benefits to the competent cells and contributes to virulence by coordinating the release of virulence factors.
机译:遗传转化的自然能力是主要人类病原体肺炎链球菌的最佳特征。最近的研究表明,能力不足的突变体的毒力会减弱,但是能力和毒力之间联系的性质仍然未知。在这里,我们记录了由感受态细胞触发的从非感受态细胞释放的毒力因子(例如,溶细胞毒素肺炎球菌溶血素)。我们将这种现象称为同素分解,涉及一种先前未描述的细菌素系统,该系统由两肽细菌素CibAB及其免疫因子CibC组成。主要的自溶素LytA和溶菌酶LytC;以及拟议的新型酰胺酶CbpD。我们表明,CibAB是绝对必需的,而LytA和LytC可以由感受态细胞或靶细胞提供。我们建议同质分解构成非感受态细胞捕食能力编程的机制,这有益于感受态细胞,并通过协调释放毒性因子而促进了毒性。

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