首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Virulence Factor PEB4 (Cj0596) and the Periplasmic Protein Cj1289 Are Two Structurally Related SurA-like Chaperones in the Human Pathogen Campylobacter jejuni
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The Virulence Factor PEB4 (Cj0596) and the Periplasmic Protein Cj1289 Are Two Structurally Related SurA-like Chaperones in the Human Pathogen Campylobacter jejuni

机译:致病因子空肠弯曲菌中的毒力因子PEB4(Cj0596)和周质蛋白Cj1289是两个结构相关的surA样伴侣。

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摘要

The PEB4 protein is an antigenic virulence factor implicated in host cell adhesion, invasion, and colonization in the food-borne pathogen Campylobacter jejuni. peb4 mutants have defects in outer membrane protein assembly and PEB4 is thought to act as a periplasmic chaperone. The crystallographic structure of PEB4 at 2.2-Å resolution reveals a dimer with distinct SurA-like chaperone and peptidyl-prolyl cis/trans isomerase (PPIase) domains encasing a large central cavity. Unlike SurA, the chaperone domain is formed by interlocking helices from each monomer, creating a domain-swapped architecture. PEB4 stimulated the rate of proline isomerization limited refolding of denatured RNase T1 in a juglone-sensitive manner, consistent with parvulin-like PPIase domains. Refolding and aggregation of denatured rhodanese was significantly retarded in the presence of PEB4 or of an engineered variant specifically lacking the PPIase domain, suggesting the chaperone domain possesses a holdase activity. Using bioinformatics approaches, we identified two other SurA-like proteins (Cj1289 and Cj0694) in C. jejuni. The 2.3-Å structure of Cj1289 does not have the domain-swapped architecture of PEB4 and thus more resembles SurA. Purified Cj1289 also enhanced RNase T1 refolding, although poorly compared with PEB4, but did not retard the refolding of denatured rhodanese. Structurally, Cj1289 is the most similar protein to SurA in C. jejuni, whereas PEB4 has most structural similarity to the Par27 protein of Bordetella pertussis. Our analysis predicts that Cj0694 is equivalent to the membrane-anchored chaperone PpiD. These results provide the first structural insights into the periplasmic assembly of outer membrane proteins in C. jejuni.
机译:PEB4蛋白是一种抗原性致病因子,与食源性空肠弯曲菌中的宿主细胞粘附,侵袭和定植有关。 peb4突变体在外膜蛋白组装中存在缺陷,并且认为PEB4充当周质伴侣。 PEB4在2.2-Å分辨率下的晶体结构揭示了一个二聚体,具有明显的SurA样分子伴侣和肽基-脯氨酰顺/反异构酶(PPIase)域,该域包围着一个大的中心腔。与SurA不同,伴侣结构域是通过互锁每个单体的螺旋结构形成的,从而形成结构域交换的体系结构。 PEB4以Juglone敏感的方式刺激了变性的RNase T1脯氨酸异构化的速率,限制了它的重折叠,这与小白蛋白样PPIase结构域一致。在PEB4或特异缺乏PPIase结构域的工程变体的存在下,变性的罗丹酶的重折叠和聚集被显着延迟,这表明伴侣结构域具有保持酶活性。使用生物信息学方法,我们在空肠弯曲杆菌中鉴定了另外两个SurA样蛋白(Cj1289和Cj0694)。 Cj1289的2.3-Å结构不具有PEB4的域交换架构,因此更类似于SurA。纯化的Cj1289也增强了RNase T1的重折叠,尽管与PEB4相比较差,但并没有阻碍变性的若丹尼斯的重折叠。在结构上,Cj1289与空肠弯曲杆菌中的SurA最相似,而PEB4与百日咳博德特氏菌的Par27蛋白具有最大的结构相似性。我们的分析预测,Cj0694等同于膜锚定伴侣PpiD。这些结果为空肠弯曲杆菌外膜蛋白的周质组装提供了第一个结构见解。

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