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Conserved, unstructured regions in Pseudomonas aeruginosa PilO are important for type IVa pilus function

机译:保守的,假单胞菌铜绿假单胞菌的非结构化区域对于IVA菌落功能很重要

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Pseudomonas aeruginosa uses long, thin fibres called type IV pili (T4P) for adherence to surfaces, biofilm formation, and twitching motility. A conserved subcomplex of PilMNOP is required for extension and retraction of T4P. To better understand its function, we attempted to co-crystallize the soluble periplasmic portions of PilNOP, using reductive surface methylation to promote crystal formation. Only PilOΔ109 crystallized; its structure was determined to 1.7?? resolution using molecular replacement. This new structure revealed two novel features: a shorter N-terminal α1-helix followed by a longer unstructured loop, and a discontinuous β-strand in the second αββ motif, mirroring that in the first motif. PISA analysis identified a potential dimer interface with striking similarity to that of the PilO homolog EpsM from the Vibrio cholerae type II secretion system. We identified highly conserved residues within predicted unstructured regions in PilO proteins from various Pseudomonads and performed site-directed mutagenesis to assess their role in T4P function. R169D and I170A substitutions decreased surface piliation and twitching motility without disrupting PilO homodimer formation. These residues could form important protein-protein interactions with PilN or PilP. This work furthers our understanding of residues critical for T4aP function.
机译:铜绿假单胞菌使用长,薄纤维称为IV型Pili(T4P),用于粘附到表面,生物膜形成和抽搐运动。 Pilmnop的保守子复合器是T4P的延伸和缩回所必需的。为了更好地理解其功能,我们试图共结晶硅藻的可溶性周质部分,使用还原表面甲基化促进晶体形成。只有Piloδ109结晶;它的结构确定为1.7 ??分辨率使用分子替代品。这种新结构揭示了两种新功能:较短的N末端α1螺旋,然后是更长的非结构化环,以及在第二αββ基序中的不连续β-股,在第一基板中镜像。 PISA分析鉴定了与来自霍乱霍乱型分泌系统的Plo同源物EPSM的潜在二聚体界面。我们在来自各种假单胞菌的Plo蛋白中预测的非结构化区域内识别出高度保守的残留物,并进行了地点诱变诱变,以评估它们在T4P功能中的作用。 R169D和I170A替换减少了表面夹闭和抽搐运动,而不会破坏Plo同型聚体形成。这些残留物可以形成与PlON或Pilp的重要蛋白质 - 蛋白质相互作用。这项工作传统我们对对T4AP功能至关重要的残留物的理解。

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