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Mechanisms of Conjugative Transfer and Type IV Secretion-Mediated Effector Transport in Gram-Positive Bacteria

机译:缀合物转移和IV型分泌介导的蛋淋菌细菌的效应输送机制

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摘要

Conjugative DNA transfer is the most important means to transfer antibiotic resistance genes and virulence determinants encoded by plasmids, integrative conjugative elements (ICE), and pathogenicity islands among bacteria. In gram-positive bacteria, there exist two types of conjugative systems, (i) type IV secretion system (T4SS)-dependent ones, like those encoded by the Enterococcus, Streptococcus, Staphylococcus, Bacillus, and Clostridia mobile genetic elements and (ii) T4SS-independent ones, as those found on Streptomyces plasmids. Interestingly, very recently, on the Streptococcus suis genome, the first gram-positive T4SS not only involved in conjugative DNA transfer but also in effector translocation to the host was detected. Although no T4SS core complex structure from gram-positive bacteria is available, several structures from T4SS protein key factors from Enterococcus and Clostridia plasmids have been solved. In this chapter, we summarize the current knowledge on the molecular mechanisms and structure-function relationships of the diverse conjugation machineries and emerging research needs focused on combatting infections and spread of multiple resistant gram-positive pathogens.
机译:共轭DNA转移是转移质粒,整合缀合元素(冰)和细菌之间的致病性岛屿编码的抗生素抗性基因和毒力决定簇的最重要方法。在革兰氏阳性细菌中,存在两种类型的缀合系统,(i)IV型分泌系统(T4SS) - 依赖于依赖于肠球菌,链球菌,葡萄球菌,芽孢杆菌和蛋白质流动遗传元素和(II)的依赖性依赖性。(II) T4SS-无关的,因为那些在链霉菌质粒上发现的那些。有趣的是,最近,在链球菌基因组上,检测到不仅参与缀合性DNA转移而且还在对宿主的效应易位中涉及的第一革兰氏阳性T4。尽管没有来自革兰氏阳性细菌的T4SS核心复杂结构,但是来自T4SS蛋白质关键因子的几种结构已经解决了来自肠球菌和梭菌细胞质粒的若干结构。在本章中,我们总结了目前关于各种共轭机和新兴研究需求的分子机制和结构功能关系的知识,重点是对抗感染和传播多种抗性革兰氏阳性病原体。

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