首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Hypothetical protein CT398 (CdsZ) interacts with σ54 (RpoN)-holoenzyme and the type III secretion export apparatus in Chlamydia trachomatis
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Hypothetical protein CT398 (CdsZ) interacts with σ54 (RpoN)-holoenzyme and the type III secretion export apparatus in Chlamydia trachomatis

机译:假设蛋白CT398(CdsZ)与沙眼衣原体中的σ54(RpoN)-全酶和III型分泌物输出装置相互作用

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摘要

A significant challenge to bacteriology is the relatively large proportion of proteins that lack sufficient sequence similarity to support functional annotation (i.e. hypothetical proteins). The aim of this study was to apply protein structural homology to gain insights into a candidate protein of unknown function (CT398) within the medically important, obligate intracellular bacterium Chlamydia trachomatis. C. trachomatis is a major human pathogen responsible for numerous infections throughout the world that can lead to blindness and infertility. A 2.12 Å crystal structure of hypothetical protein CT398 was determined that was comprised of N-terminal coiled-coil and C-terminal Zn-ribbon domains. The structure of CT398 displayed a high degree of structural similarity to FlgZ (Flagellar-associated zinc-ribbon domain protein) from Helicobacter pylori. This observation directed analyses of candidate protein partners of CT398, revealing interactions with two paralogous type III secretion system (T3SS) ATPase-regulators (CdsL and FliH) and the alternative sigma factor RpoN (σ54). Furthermore, genetic introduction of a conditional expression, affinity-tagged construct into C. trachomatis enabled the purification of a CT398-RpoN-holoenzyme complex, suggesting a potential role for CT398 in modulating transcriptional activity during infection. The interactions reported here, in tandem with previous FlgZ studies in H. pylori, indicate that CT398 functions as a regulator of several key areas of chlamydial biology throughout the developmental cycle. Accordingly, we propose that CT398 be named CdsZ (Contact-dependent secretion-associated zinc-ribbon domain protein).
机译:细菌学面临的重大挑战是相对较大比例的蛋白质,它们缺乏足够的序列相似性来支持功能注释(即假设的蛋白质)。这项研究的目的是应用蛋白质结构同源性,以深入了解医学上重要的专性胞内沙眼衣原体细菌中未知功能的候选蛋白质(CT398)。沙眼衣原体是一种主要的人类病原体,在世界范围内引起大量感染,可导致失明和不育。确定了假定蛋白质CT398的2.12Å晶体结构,该结构由N末端卷曲螺旋结构和C末端Zn碳带结构域组成。 CT398的结构显示与幽门螺杆菌的FlgZ(Flagellar相关的锌带结构域蛋白)高度相似。该观察指导了对CT398候选蛋白伴侣的分析,揭示了与两个旁系III型分泌系统(T3SS)ATPase调节剂(CdsL和FliH)和替代的sigma因子RpoN(σ 54 )的相互作用。此外,通过将条件表达,亲和标签构建体遗传导入沙眼衣原体,可以纯化CT398-RpoN-全酶复合物,提示CT398在感染过程中可能具有调节转录活性的作用。此处报道的相互作用与以前在幽门螺杆菌中的FlgZ研究相结合,表明CT398在整个发育周期中均是衣原体生物学几个关键领域的调节剂。因此,我们建议将CT398命名为CdsZ(接触依赖性分泌相关的锌带结构域蛋白)。

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