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心肌肌球蛋白结合蛋白C(MyBP-C)中央结构域的结构、稳定性及动力学:对多结构域组装的影响及心肌病病因

Structure, stability and dynamics of the central domain of cardiac myosin binding protein C (MyBP-C): implications for multidomain assembly and causes for cardiomyopathy.

作者信息

Idowu Seraphina M, Gautel Mathias, Perkins Stephen J, Pfuhl Mark

机构信息

Department of Pharmacology, University College London, Gower Street, WC1E 6BT, London, UK.

出版信息

J Mol Biol. 2003 Jun 13;329(4):745-61. doi: 10.1016/s0022-2836(03)00425-x.

Abstract

The large multidomain muscle protein myosin binding protein C (MyBP-C) has been implicated for some time in cardiac disease while until recently little was known about its structure and function. Here we present a detailed study of the central domain C5 of the cardiac isoform of MyBP-C. This domain is unusual in several aspects. Firstly it contains two sizeable insertions compared to the non-cardiac isoforms. The first insertion comprises the linker between domains cC4 and cC5 that is elongated by ten amino acid residues, the second insertion comprises an elongation of the CD-loop in the middle of the domain by approximately 30 amino acid residues. Secondly two point mutations linked to familial hypertrophic cardiomyopathy (FHC) have been identified in this domain. This work shows that the general fold of cC5 is in agreement with the IgI family of beta-sandwich structures. The long cardiac-specific linker between cC4 and cC5 is not a linker at all but an integral part of the fold of cC5, as evidenced by an unfolded mutant in which this segment was removed. The second insertion is shown to be unstructured, highly dynamic and mostly extended according to NMR relaxation measurements and analytical ultracentrifugation. The loss of several key interactions conserved in the CD-loop of the IgI fold is assumed to be responsible for the low stability of cC5 compared to other IgI domains from titin and MyBP-C itself. The low thermodynamic stability of cC5 is most evident in one of the two FHC-linked mutations, N755K (Asn115 in this construct) which is mainly unfolded with a small proportion of a native-like folded species. In contrast, the second FHC-linked mutation, R654H (Arg14 in this construct) is as well folded and stable as the wild-type. This residue is located in the extended beta-bulge at the N terminus of the protein, pointing towards the surface of the CFGA' beta-sheet. This position is in agreement with recent data pointing to a function of Arg654 in an intermolecular interaction with MyBP-C domain cC8.

摘要

大型多结构域肌肉蛋白肌球蛋白结合蛋白C(MyBP-C)与心脏疾病的关联已有一段时间,但直到最近人们对其结构和功能仍知之甚少。在此,我们对MyBP-C心脏同工型的中央结构域C5进行了详细研究。该结构域在几个方面都很独特。首先,与非心脏同工型相比,它包含两个相当大的插入片段。第一个插入片段是结构域cC4和cC5之间的连接子,延长了10个氨基酸残基;第二个插入片段是结构域中部CD环延长了约30个氨基酸残基。其次,在该结构域中已鉴定出两个与家族性肥厚型心肌病(FHC)相关的点突变。这项研究表明,cC5的总体折叠与IgI家族的β-折叠结构一致。cC4和cC5之间长的心脏特异性连接子根本不是连接子,而是cC5折叠的一个组成部分,去除该片段的未折叠突变体证明了这一点。根据核磁共振弛豫测量和分析超速离心结果,第二个插入片段显示为无结构、高度动态且大多呈伸展状态。与肌联蛋白和MyBP-C自身的其他IgI结构域相比,cC5的低稳定性被认为是由于IgI折叠的CD环中几个保守的关键相互作用丧失所致。cC5的低热力学稳定性在两个与FHC相关的突变之一N755K(此构建体中的Asn115)中最为明显,该突变主要处于未折叠状态,只有一小部分类似天然折叠的物种。相反,第二个与FHC相关的突变R654H(此构建体中的Arg14)与野生型一样折叠良好且稳定。该残基位于蛋白质N端的延伸β-凸起处,指向CFGA'β-折叠的表面。这个位置与最近的数据一致,这些数据表明Arg654在与MyBP-C结构域cC8的分子间相互作用中发挥作用。

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