Sun Linlin, Dong Yangyang, Shi Miaomiao, Jin Miao, Zhou Qing, Luo Zhao-Qing, Gao Haichun
From the Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang 310058, China and.
the Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.
J Biol Chem. 2014 May 23;289(21):14547-59. doi: 10.1074/jbc.M114.552000. Epub 2014 Apr 14.
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.
近一半的鞭毛微生物拥有多鞭毛蛋白系统。尽管在许多细菌中,仅由多种鞭毛蛋白之一就能形成功能性的鞭毛丝,但更常见的情况是,一种鞭毛蛋白是主要成分,其他鞭毛蛋白起辅助作用。针对这种情况提出的潜在机制涵盖了多个层面的鞭毛蛋白调控,包括转录、翻译、翻译后修饰、分泌以及鞭毛丝组装。在奥奈达希瓦氏菌中,鞭毛丝由FlaA和FlaB鞭毛蛋白组成;就运动性而言,后者是主要成分。在本研究中,我们表明,除了鞭毛丝组装外,这两种鞭毛蛋白在所有层面的调控上并无差异。进一步分析表明,两个氨基酸残基在很大程度上决定了运动性方面的功能差异。鉴于希瓦氏菌偏好与固体表面相关的生活方式,由FlaA或FlaB组成的鞭毛丝对其同样具有支持作用,我们推测,鞭毛在表面黏附及细菌群落形成中的作用对于它们在这些特定生态位中的生存和增殖尤为重要。