首页> 外文期刊>The Journal of biological chemistry >Combination of Two Separate Binding Domains Defines Stoichiometry between Type III Secretion System Chaperone IpgC and Translocator Protein IpaB
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Combination of Two Separate Binding Domains Defines Stoichiometry between Type III Secretion System Chaperone IpgC and Translocator Protein IpaB

机译:两种单独的结合结构域的组合在III型分泌系统伴随IPGC和译备器蛋白IPAB之间定义了化学计量

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Type III secretion systems (TTSSs) utilized by enteropathogenic bacteria require the presence of small, acidic virulence-associated chaperones for effective host cell infection. We adopted a combination of biochemical and cellular techniques to define the chaperone binding domains (CBDs) in the translocators IpaB and IpaC associated with the chaperone IpgC from Shigella flexneri. We identified a novel CBD in IpaB and furthermore precisely mapped the boundaries of the CBDs in both translocator proteins. In IpaC a single binding domain associates with IpgC. In IpaB, we show that the binding of the newly characterized CBD is essential in maintaining the ternary arrangement of chaperone-translocator complex. This hitherto unknown function is reflected in the co-crystal structure as well, with an IpgC dimer bound to an IpaB fragment comprising both CBDs. Moreover, in the absence of this novel CBD the IpaB/IpgC complex aggregates. This dual-recognition of a domain in the protein by the chaperone in facilitating the correct chaperone-substrate organization describes a new function for the TTSS associated chaperone-substrate complexes.
机译:III型分泌系统(TTSSS)由肠致病细菌使用需要小的酸性毒力相关的伴侣,用于有效宿主细胞感染。我们采用了生物化学和细胞技术的组合,以将换向器IPAB的伴侣结合结构域(CBDs)定义与志贺氏菌与谢氏菌IPGC相关的IPAC。我们在IPAB中鉴定了一种新型CBD,并且在译备器蛋白中精确地映射了CBD的界限。在IPAC中,使用IPGC的单个绑定域关联。在IPAB中,我们表明新特征的CBD的结合对于维持伴侣旋转器复合物的三元排列是必不可少的。本迄今未知的功能也反映在共晶体结构中,并且具有与包含两个CBD的IPAB片段结合的IPGC二聚体。此外,在没有这种新的CBD的情况下,IPAB / IPGC复合物聚集体。通过促进正确的伴侣衬底组织促进蛋白质中蛋白质中的蛋白质的这种双重识别描述了TTSS相关的伴侣基谱系复合物的新功能。

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