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Chain-Selective Isotopic Labeling of the Heterodimeric Type III Secretion Chaperone Scc4:Scc1 Reveals the Total Structural Rearrangement of the

机译:杂二聚体III型分泌伴侣SCC4:SCC1的链选择性同位素标记显示揭示了总结构重排

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摘要

Scc4 is an unusual bi-functional protein from Chlamydia trachomatis (CT) that functions as a type III secretion system (T3SS) chaperone and an RNA polymerase (RNAP)-binding protein. Both functions require interactions with protein partners during specific stages of the CT developmental cycle. As a T3SS chaperone, Scc4 binds Scc1 during the late stage of development to form a heterodimer complex, which chaperones the essential virulence effector, CopN. During the early-middle stage of development, Scc4 regulates T3SS gene expression by binding the σ66-containing RNAP holoenzyme. In order to study the structure and association mechanism of the Scc4:Scc1 T3SS chaperone complex using nuclear magnetic resonance (NMR) spectroscopy, we developed an approach to selectively label each chain of the Scc4:Scc1 complex with the 15N-isotope. The approach allowed one protein to be visible in the NMR spectrum at a time, which greatly reduced resonance overlap and permitted comparison of the backbone structures of free and bound Scc4. 1H,15N-heteronuclear single quantum coherence spectra of the 15N-Scc4:Scc1 and Scc4:15N-Scc1 complexes showed a total structural rearrangement of Scc4 upon binding Scc1 and a dynamic region isolated to Scc1, respectively. Development of the chain-selective labeling approach revealed that the association of Scc4 and Scc1 requires partial denaturation of Scc1 to form the high affinity complex, while low affinity interactions occurred between the isolated proteins under non-denaturing conditions. These results provide new models for Scc4′s functional switching mechanism and Scc4:Scc1 association in CT.
机译:SCC4是一种来自衣原体(CT)的异常双官能蛋白,其用作III型分泌系统(T3SS)伴侣伴侣和RNA聚合酶(RNAP) - 粘合蛋白。两种功能需要在CT发育循环的特定阶段期间与蛋白质合作伙伴相互作用。作为T3SS伴侣,SCC4在发育后期结束时结合SCC1,形成异二聚体复合物,伴随着基本的毒力效应器,COPN。在发育早期阶段,SCC4通过结合含σ66的RNAP全酶来调节T3SS基因表达。为了研究SCC4的结构和关联机制:使用核磁共振(NMR)光谱的SCC1 T3SS伴侣络合物,我们开发了一种选择性地标记SCC4:SCC1络合物的每种链条的方法,与15N同位素一起选择。该方法在NMR光谱中允许在NMR光谱中可见的一种蛋白质,这大大降低了共振重叠并允许比较自由和结合SCC4的骨干结构。在15N-SCC4:SCC1和SCC4:15N-SCC1复合物中,在结合SCC1和分离SCC1分别分离的动态区域时,15N-SCC4:SCC1和SCC1和SCC1和SCC1和SCC1复合物的总结构重新分别。链接选择性标记方法的发展显示,SCC4和SCC1的关联需要部分变性SCC1以形成高亲和力复合物,而在非变性条件下分离的蛋白质之间发生低亲和力相互作用。这些结果为SCC4的功能开关机制和SCC4:SCC1关联提供了新的模型。

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