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人中心蛋白2/hSfi1复合物的结构、动力学与热力学

Structure, dynamics and thermodynamics of the human centrin 2/hSfi1 complex.

作者信息

Martinez-Sanz Juan, Kateb Fatiha, Assairi Liliane, Blouquit Yves, Bodenhausen Geoffrey, Abergel Daniel, Mouawad Liliane, Craescu Constantin T

机构信息

Institut Curie-Centre de Recherche, F-91405 Orsay Cedex, France.

出版信息

J Mol Biol. 2010 Jan 8;395(1):191-204. doi: 10.1016/j.jmb.2009.10.041. Epub 2009 Oct 24.

Abstract

Centrin, an EF-hand calcium-binding protein, has been shown to be involved in the duplication of centrosomes, and Sfi1 (Suppressor of fermentation-induced loss of stress resistance protein 1) is one of its centrosomal targets. There are three isoforms of human centrin, but here we only considered centrin 2 (HsCen2). This protein has the ability to bind to any of the approximately 25 repeats of human Sfi1 (hSfi1) with more or less affinity. In this study, we mainly focused on the 17th repeat (R17-hSfi1-20), which presents the highest level of similarity with a well-studied 17-residue peptide (P17-XPC) from human xeroderma pigmentosum complementation group C protein, another centrin target for DNA repair. The only known structure of HsCen2 was resolved in complex with P17-XPC. The 20-residue peptide R17-hSfi1-20 exhibits the motif L8L4W1, which is the reverse of the XPC motif, W1L4L8. Consequently, the dipole of the helix formed by this motif has a reverse orientation. We wished to ascertain the impact of this reversal on the structure, dynamics and affinity of centrin. To address this question, we determined the structure of C-HsCen2 [the C-terminal domain of HsCen2 (T94-Y172)] in complex with R17-hSfi1-20 and monitored its dynamics by NMR, after having verified that the N-terminal domain of HsCen2 does not interact with the peptide. The structure shows that the binding mode is similar to that of P17-XPC. However, we observed a 2 -A translation of the R17-hSfi1-20 helix along its axis, inducing less anchorage in the protein and the disruption of a hydrogen bond between a tryptophan residue in the peptide and a well-conserved nearby glutamate in C-HsCen2. NMR dynamic studies of the complex strongly suggested the existence of an unusual calcium secondary binding mode in calcium-binding loop III, made possible by the uncommon residue composition of this loop. The secondary metal site is only populated at high calcium concentration and depends on the type of bound ligand.

摘要

中心蛋白是一种EF手型钙结合蛋白,已被证明参与中心体的复制,而Sfi1(发酵诱导的应激抗性丧失抑制蛋白1)是其在中心体上的靶点之一。人类中心蛋白有三种异构体,但在此我们仅考虑中心蛋白2(HsCen2)。这种蛋白能够以或多或少的亲和力与人类Sfi1(hSfi1)的约25个重复序列中的任何一个结合。在本研究中,我们主要聚焦于第17个重复序列(R17-hSfi1-20),它与来自人类着色性干皮病C组蛋白的一个经过充分研究的17个残基肽段(P17-XPC)具有最高水平的相似性,P17-XPC是中心蛋白在DNA修复方面的另一个靶点。HsCen2唯一已知的结构是与P17-XPC形成的复合物结构。20个残基的肽段R17-hSfi1-20呈现出L8L4W1基序,这与XPC基序W1L4L8相反。因此,由该基序形成的螺旋的偶极具有相反的方向。我们希望确定这种反转对中心蛋白的结构、动力学和亲和力的影响。为解决这个问题,并在验证HsCen2的N端结构域不与该肽段相互作用后,我们确定了与R17-hSfi1-20形成复合物的C-HsCen2 [HsCen2的C端结构域(T94-Y172)]的结构,并通过核磁共振监测其动力学。该结构表明结合模式与P17-XPC的相似。然而,我们观察到R17-hSfi1-20螺旋沿其轴平移了2 Å,导致其在蛋白中的锚定减少,并破坏了肽段中的一个色氨酸残基与C-HsCen2中一个保守的附近谷氨酸之间的氢键。该复合物的核磁共振动力学研究强烈表明,钙结合环III中存在一种不寻常的钙二级结合模式,这是由该环不寻常的残基组成所促成的。二级金属位点仅在高钙浓度下存在,并且取决于结合配体的类型。

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