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空肠弯曲菌81-176中鞭毛蛋白糖基化的功能特性

Functional characterization of flagellin glycosylation in Campylobacter jejuni 81-176.

作者信息

Ewing Cheryl P, Andreishcheva Ekaterina, Guerry Patricia

机构信息

Enteric Diseases Department, Naval Medical Research Center, 503 Robert Grant Ave., Silver Spring, MD 20910, USA.

出版信息

J Bacteriol. 2009 Nov;191(22):7086-93. doi: 10.1128/JB.00378-09. Epub 2009 Sep 11.

Abstract

The major flagellin of Campylobacter jejuni strain 81-176, FlaA, has been shown to be glycosylated at 19 serine or threonine sites, and this glycosylation is required for flagellar filament formation. Some enzymatic components of the glycosylation machinery of C. jejuni 81-176 are localized to the poles of the cell in an FlhF-independent manner. Flagellin glycosylation could be detected in flagellar mutants at multiple levels of the regulatory hierarchy, indicating that glycosylation occurs independently of the flagellar regulon. Mutants were constructed in which each of the 19 serine or threonines that are glycosylated in FlaA was converted to an alanine. Eleven of the 19 mutants displayed no observable phenotype, but the remaining 8 mutants had two distinct phenotypes. Five mutants (mutations S417A, S436A, S440A, S457A, and T481A) were fully motile but defective in autoagglutination (AAG). Three other mutants (mutations S425A, S454A, and S460A) were reduced in motility and synthesized truncated flagellar filaments. The data implicate certain glycans in mediating filament-filament interactions resulting in AAG and other glycans appear to be critical for structural subunit-subunit interactions within the filament.

摘要

空肠弯曲菌81-176菌株的主要鞭毛蛋白FlaA已被证明在19个丝氨酸或苏氨酸位点发生糖基化,这种糖基化是鞭毛丝形成所必需的。空肠弯曲菌81-176糖基化机制的一些酶成分以不依赖FlhF的方式定位于细胞两极。在鞭毛突变体的多个调控层次水平上都能检测到鞭毛蛋白糖基化,这表明糖基化的发生独立于鞭毛调节子。构建了突变体,其中FlaA中发生糖基化的19个丝氨酸或苏氨酸中的每一个都被转化为丙氨酸。19个突变体中有11个没有观察到表型,但其余8个突变体有两种不同的表型。5个突变体(S417A、S436A、S440A、S457A和T481A突变)具有完全运动能力,但在自身凝集(AAG)方面存在缺陷。另外3个突变体(S425A、S454A和S460A突变)运动能力下降,并合成截短的鞭毛丝。数据表明某些聚糖介导丝-丝相互作用导致AAG,而其他聚糖似乎对丝内的结构亚基-亚基相互作用至关重要。

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