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ClpA伴侣蛋白N结构域中肽结合位点的晶体学研究。

Crystallographic investigation of peptide binding sites in the N-domain of the ClpA chaperone.

作者信息

Xia Di, Esser Lothar, Singh Satyendra K, Guo Fusheng, Maurizi Michael R

机构信息

Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Struct Biol. 2004 Apr-May;146(1-2):166-79. doi: 10.1016/j.jsb.2003.11.025.

DOI:10.1016/j.jsb.2003.11.025
PMID:15037248
Abstract

Escherichia coli ClpA, an Hsp100/Clp chaperone and an integral component of the ATP-dependent ClpAP protease, participates in the dissolution and degradation of regulatory proteins and protein aggregates. ClpA consists of three functional domains: an N-terminal domain and two ATPase domains, D1 and D2. The N-domain is attached to D1 by a mobile linker and is made up of two tightly bound, identically folded alpha-helical bundles related by a pseudo 2-fold symmetry. Between the halves of the pseudo-dimer is a large flexible acidic loop that becomes better ordered upon binding of the small adaptor protein, ClpS. We have identified a number of structural features in the N-domain, including a Zn(++) binding motif, several interfaces for binding to ClpS, and a prominent hydrophobic surface area that binds peptides in different configurations. These structural motifs may contribute to binding of protein or peptide substrates with weak affinity and broad specificity. Kinetic studies comparing wild-type ClpA to a mutant ClpA with its N-domain deleted show that the N-domains contribute to the binding of a non-specific protein substrate but not of a folded substrate with the specific SsrA recognition tag. A functional model is proposed in which the N-domains in ClpA function as tentacles to weakly hold on to proteins thereby enhancing local substrate concentration.

摘要

大肠杆菌ClpA是一种Hsp100/Clp伴侣蛋白,也是ATP依赖性ClpAP蛋白酶的一个组成部分,参与调节蛋白和蛋白聚集体的溶解与降解。ClpA由三个功能结构域组成:一个N端结构域和两个ATP酶结构域D1和D2。N结构域通过一个可移动的连接子与D1相连,由两个紧密结合、折叠方式相同的α-螺旋束组成,二者通过准2倍对称相关联。在准二聚体的两部分之间是一个大的柔性酸性环,在与小衔接蛋白ClpS结合后会变得更加有序。我们在N结构域中鉴定出了许多结构特征,包括一个Zn(++)结合基序、几个与ClpS结合的界面,以及一个能以不同构象结合肽段的突出疏水表面积。这些结构基序可能有助于与亲和力弱且特异性广泛的蛋白质或肽底物结合。对野生型ClpA和N结构域缺失的突变型ClpA进行的动力学研究表明,N结构域有助于非特异性蛋白质底物的结合,但对带有特定SsrA识别标签的折叠底物的结合没有贡献。提出了一个功能模型,其中ClpA中的N结构域起到触角的作用,微弱地抓住蛋白质,从而提高局部底物浓度。

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