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Structural Basis of Pilus Anchoring by the Ancillary Pilin RrgC of Streptococcus pneumoniae

机译:植物锚杆锚杆锚杆锚杆锚杆锚杆菌的结构基础

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Pili are surface-attached, fibrous virulence factors that play key roles in the pathogenesis process of a number of bacterial agents. Streptococcus pneumoniae is a causative agent of pneumonia and meningitis, and the appearance of drug-resistance organisms has made its treatment challenging, especially in developing countries. Pneumococcus-expressed pili are composed of three structural proteins: RrgB, which forms the polymerized backbone, RrgA, the tip-associated adhesin, and RrgC, which presumably associates the pilus with the bacterial cell wall. Despite the fact that the structures of both RrgA and RrgB were known previously, structural information for RrgC was still lacking, impeding the analysis of a complete model of pilus architecture. Here, we report the structure of RrgC to 1.85 ? and reveal that it is a three-domain molecule stabilized by two intradomain isopeptide bonds. RrgC does not depend on pilus-specific sortases to become attached to the cell wall; instead, it binds the preformed pilus to the peptidoglycan by employing the catalytic activity of SrtA. A comprehensive model of the type 1 pilus from S. pneumoniae is also presented.
机译:pili是表面附着的纤维毒力因子,可在许多细菌剂的发病机制过程中起关键作用。肺炎链球菌是一种肺炎和脑膜炎的致病因子,抗药性生物的出现使其治疗挑战,特别是在发展中国家。肺炎球菌表达的pili由三种结构蛋白质组成:RRGB,其形成聚合的主链,RRGA,尖端相关粘合剂和RRGC,其可能会将菌率与细菌细胞壁相关联。尽管RRGA和RRGB的结构先前已知,但仍然缺乏RRGC的结构信息,阻碍了对Pilus架构的完整模型的分析。在这里,我们将RRGC的结构报告为1.85?并揭示它是由两种颅内肽键稳定的三个结构域分子。 RRGC不依赖于对细胞壁附着的Pilus特定的分类酶;相反,通过使用SRTA的催化活性,它将预制率的菌刺与肽聚糖结合到肽聚糖中。还提出了来自S.肺炎的1型菌落的综合模型。

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