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The outer membrane secretin PilQ from Neisseria meningitidis binds DNA

机译:脑膜炎奈瑟氏球菌的外膜分泌蛋白PilQ与DNA结合

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摘要

Neisseria meningitidis is naturally competent for transformation throughout its growth cycle. Transformation in neisserial species is coupled to the expression of type IV pili, which are present on the cell surface as bundled filamentous appendages, and are assembled, extruded and retracted by the pilus biogenesis components. During the initial phase of the transformation process, binding and uptake of DNA takes place with entry through a presumed outer-membrane channel into the periplasm. This study showed that DNA associates only weakly with purified pili, but binds significantly to the PilQ complex isolated directly from meningococcal membranes. By assessing the DNA-binding activity of the native complex PilQ, as well as recombinant truncated PilQ monomers, it was shown that the N-terminal region of PilQ is involved in the interaction with DNA. It was evident that the binding of ssDNA to PilQ had a higher affinity than the binding of dsDNA. The binding of DNA to PilQ did not, however, depend on the presence of the neisserial DNA-uptake sequence. It is suggested that transforming DNA is introduced into the cell through the outer-membrane channel formed by the PilQ complex, and that DNA uptake occurs by non-specific introduction of DNA coupled to pilus retraction, followed by presentation to DNA-binding component(s), including PilQ.
机译:脑膜炎奈瑟氏球菌自然可以在整个生长周期中进行转化。奈瑟氏球菌属物种的转化与IV型菌毛的表达相关,后者以束状丝状附件的形式存在于细胞表面,并由菌毛的生物发生成分进行组装,挤压和缩回。在转化过程的初始阶段,DNA的结合和吸收通过假定的外膜通道进入周质而发生。这项研究表明,DNA仅与纯化的菌毛弱结合,但与直接从脑膜炎球菌膜分离的PilQ复合物显着结合。通过评估天然复合物PilQ以及重组的截短PilQ单体的DNA结合活性,表明PilQ的N端区域参与了与DNA的相互作用。显然,ssDNA与PilQ的结合比dsDNA的结合具有更高的亲和力。但是,DNA与PilQ的结合并不取决于奈瑟氏球菌DNA摄取序列的存在。建议将转化的DNA通过PilQ复合物形成的外膜通道导入细胞中,并且通过非特异性导入与菌毛缩回耦合的DNA并随后呈递给DNA结合成分来进行DNA摄取。 ),包括PilQ。

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