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Topology and Structure/Function Correlation of Ring- and Gate-forming Domains in the Dynamic Secretin Complex of Thermus thermophilus

机译:嗜热栖热菌动态分泌蛋白复合物中环和门形成域的拓扑和结构/功能相关。

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摘要

Secretins are versatile outer membrane pores used by many bacteria to secrete proteins, toxins, or filamentous phages; extrude type IV pili (T4P); or take up DNA. Extrusion of T4P and natural transformation of DNA in the thermophilic bacterium Thermus thermophilus requires a unique secretin complex comprising six stacked rings, a membrane-embedded cone structure, and two gates that open and close a central channel. To investigate the role of distinct domains in ring and gate formation, we examined a set of deletion derivatives by cryomicroscopy techniques. Here we report that maintaining the N0 ring in the deletion derivatives led to stable PilQ complexes. Analyses of the variants unraveled that an N-terminal domain comprising a unique βββαβ fold is essential for the formation of gate 2. Furthermore, we identified four βαββα domains essential for the formation of the N2 to N5 rings. Mutant studies revealed that deletion of individual ring domains significantly reduces piliation. The N1, N2, N4, and N5 deletion mutants were significantly impaired in T4P-mediated twitching motility, whereas the motility of the N3 mutant was comparable with that of wild-type cells. This indicates that the deletion of the N3 ring leads to increased pilus dynamics, thereby compensating for the reduced number of pili of the N3 mutant. All mutants exhibit a wild-type natural transformation phenotype, leading to the conclusion that DNA uptake is independent of functional T4P.
机译:促胰液素是许多细菌用来分泌蛋白质,毒素或丝状噬菌体的多功能外膜孔。挤出IV型菌毛(T4P);或吸收DNA。在嗜热嗜热菌中,T4P的挤出和DNA的自然转化需要独特的促胰液素复合物,该复合物包括六个堆叠的环,一个膜嵌入的圆锥结构和两个打开和关闭中央通道的门。为了研究不同域在环和门形成中的作用,我们通过低温显微镜技术检查了一组缺失衍生物。在这里,我们报道在缺失衍生物中维持N0环导致稳定的PilQ复合物。分析变体后发现,包含唯一βββαβ折叠的N末端结构域对于形成门2是必不可少的。此外,我们鉴定了四个对形成N2至N5环必不可少的βαββα结构域。突变研究表明,删除单个环结构域可显着降低毛羽。 N1,N2,N4和N5缺失突变体在T4P介导的抽动运动中明显受损,而N3突变体的运动性与野生型细胞相当。这表明N3环的缺失导致菌毛动力学增加,从而补偿了N3突变体菌毛数目的减少。所有突变体均表现出野生型自然转化表型,从而得出结论,DNA摄取不依赖于功能性T4P。

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