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CbpA J 结构域与调节蛋白 Cbpm 的结合解释了其特异性,并提示了 Cbpm 和转录调节因子之间的进化联系。

Structure of CbpA J-domain bound to the regulatory protein Cbpm explains its specificity and suggests evolutionary link between Cbpm and transcriptional regulators.

机构信息

Department of Chemistry and Biochemistry, Concordia University, Montréal, Québec, Canada; Life Sciences, National Research Council of Canada, Montréal, Québec, Canada.

Département de biochimie, de microbiologie et de bio-informatique, et L'Institut de biologie intégrative et des systèmes, et PROTEO, Université Laval, Québec City, Québec, Canada.

出版信息

PLoS One. 2014 Jun 19;9(6):e100441. doi: 10.1371/journal.pone.0100441. eCollection 2014.

Abstract

CbpA is one of the six E. coli DnaJ/Hsp40 homologues of DnaK co-chaperones and the only one that is additionally regulated by a small protein CbpM, conserved in γ-proteobacteria. CbpM inhibits the co-chaperone and DNA binding activities of CbpA. This regulatory function of CbpM is accomplished through reversible interaction with the N-terminal J-domain of CbpA, which is essential for the interaction with DnaK. CbpM is highly specific for CbpA and does not bind DnaJ despite the high degree of structural and functional similarity between the J-domains of CbpA and DnaJ. Here we report the crystal structure of the complex of CbpM with the J-domain of CbpA. CbpM forms dimers and the J-domain of CbpA interacts with both CbpM subunits. The CbpM-binding surface of CbpA is highly overlapping with the CbpA interface for DnaK, providing a competitive model for regulation through forming mutually exclusive complexes. The structure also provides the explanation for the strict specificity of CbpM for CbpA, which we confirmed by making mutants of DnaJ that became regulated by CbpM. Interestingly, the structure of CbpM reveals a striking similarity to members of the MerR family of transcriptional regulators, suggesting an evolutionary connection between the functionally distinct bacterial co-chaperone regulator CbpM and the transcription regulator HspR.

摘要

CbpA 是大肠杆菌 DnaK 共伴侣的六个 DnaJ/Hsp40 同源物之一,也是唯一受 γ-变形菌保守的小蛋白 CbpM 调节的蛋白。CbpM 抑制共伴侣和 CbpA 的 DNA 结合活性。CbpM 的这种调节功能是通过与 CbpA 的 N 端 J 结构域的可逆相互作用来实现的,这对于与 DnaK 的相互作用是必不可少的。CbpM 对 CbpA 具有高度特异性,尽管 CbpA 和 DnaJ 的 J 结构域具有高度的结构和功能相似性,但 CbpM 并不结合 DnaJ。在这里,我们报告了 CbpM 与 CbpA 的 J 结构域复合物的晶体结构。CbpM 形成二聚体,CbpA 的 J 结构域与两个 CbpM 亚基相互作用。CbpA 与 CbpM 结合的表面与 CbpA 与 DnaK 的界面高度重叠,为通过形成互斥复合物进行调节提供了一个竞争模型。该结构还为 CbpM 对 CbpA 的严格特异性提供了解释,我们通过使 DnaJ 突变体成为 CbpM 调节的突变体来证实了这一点。有趣的是,CbpM 的结构与 MerR 家族转录调节剂的成员惊人地相似,这表明在功能截然不同的细菌共伴侣调节剂 CbpM 和转录调节剂 HspR 之间存在进化联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3fd/4063869/269a5ee63697/pone.0100441.g001.jpg

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