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首页> 外文期刊>The Journal of biological chemistry >Two Residues Predominantly Dictate Functional Difference in Motility between Shewanella oneidensis Flagellins FlaA and FlaB
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Two Residues Predominantly Dictate Functional Difference in Motility between Shewanella oneidensis Flagellins FlaA and FlaB

机译:两种残留物主要决定了雪松oneidensis鞭毛斑块和松弛之间的动机功能差异

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摘要

Nearly half of flagellated microorganisms possess a multiple-flagellin system. Although a functional filament can be formed from one of multiple flagellins alone in many bacteria, it is more common that one flagellin is the major constituent and others contribute. Underlying mechanisms proposed for such scenarios cover flagellin regulation of various levels, including transcription, translation, post-translational modification, secretion, and filament assembly. In Shewanella oneidensis, the flagellar filament is composed of FlaA and FlaB flagellins; the latter is the major one in terms of motility. In this study, we showed that regulation of all levels except for filament assembly is indistinguishable between these two flagellins. Further analyses revealed that two amino acid residues predominantly dictated functional difference with respect to motility. Given that Shewanella prefer a solid surface-associated life style, of which filaments consisting of either FlaA or FlaB are equally supportive, we envision that roles of flagella in surface adhesion and formation of bacterial communities are particularly important for their survival and proliferation in these specific niches.
机译:近一半的被鞭毛的微生物具有多鞭毛系统。虽然功能丝可以单独形成多种鞭毛中的一种,但是更常见的是,一个鞭毛是主要的组成部分和其他旗子。提出的潜在机制,用于这种情况覆盖各种水平的鞭毛调节,包括转录,翻译,翻译后修改,分泌和丝组件。在雪兰耳oneidensis中,鞭毛灯丝由FLAA和Flab鞭毛组成;后者是在动机方面的主要一个。在这项研究中,我们表明,除了灯丝组件之外的所有级别的调节都在这两个鞭毛之间无法区分。进一步分析显示,两个氨基酸残基主要决定了与运动性的功能差异。考虑到沉蕉优选的是固体表面相关的寿命,其中由FLAA或韧皮组成的长丝同样支持,我们设想鞭毛在表面粘附和形成细菌社区中的角色对于它们在这些特定的生存和增殖尤为重要利基。

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