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鉴定肥厚型心肌病错义突变所调控的肌球蛋白结合蛋白-C结构域之间的新型相互作用。

Identification of novel interactions between domains of Myosin binding protein-C that are modulated by hypertrophic cardiomyopathy missense mutations.

作者信息

Moolman-Smook Johanna, Flashman Emily, de Lange Willem, Li Zhili, Corfield Valerie, Redwood Charles, Watkins Hugh

机构信息

US/MRC Centre for Molecular and Cellular Biology, University of Stellenbosch, Tygerberg, South Africa.

出版信息

Circ Res. 2002 Oct 18;91(8):704-11. doi: 10.1161/01.res.0000036750.81083.83.

Abstract

Cardiac myosin binding protein-C (cMyBPC) is a modular protein consisting of 11 domains whose precise function and sarcomeric arrangement are incompletely understood. Identification of hypertrophic cardiomyopathy (HCM)--causing missense mutations in cMyBPC has highlighted the significance of certain domains. Of particular interest is domain C5, an immunoglobulin-like domain with a cardiac-specific insert, which is of unknown function yet is the site of two HCM-causing missense mutations. To identify interactors with this region, a human cardiac cDNA library was screened in a yeast two-hybrid (Y2H) assay using the C5 sequence as bait. Screening >7x10(6) clones surprisingly revealed that domain C5 preferentially bound to clones encoding C-terminal fragments of cMyBPC; the interacting region was narrowed to domain C8 by deletion mapping. A surface plasmon resonance assay using purified recombinant cMyBPC domains was used to measure the affinity of C5 and C8 in vitro (K(a)=1x10(5) mol/L(-1)). This affinity was decreased about 2-fold by the HCM mutation R654H, and by at least 10-fold by the mutation N755K. Further Y2H assays also demonstrated specific binding between domains C7 and C10 of cMyBPC. Based on these novel interactions, and previous biochemical and structural data, we propose that cMyBPC molecules trimerize into a collar around the thick filament, with overlaps of domains C5-C7 of one cMyBPC with C8-C10 of another. We speculate that this interaction may be dynamically formed and released, thereby restricting or favoring cross-bridge formation, respectively. We suggest that the HCM mutations act by altering the cMyBPC collar, indicating its importance in thick filament structure and regulation.

摘要

心肌肌球蛋白结合蛋白-C(cMyBPC)是一种模块化蛋白,由11个结构域组成,其精确功能和肌节排列尚未完全明确。在cMyBPC中鉴定出导致肥厚型心肌病(HCM)的错义突变,凸显了某些结构域的重要性。特别值得关注的是结构域C5,它是一个具有心脏特异性插入序列的免疫球蛋白样结构域,功能未知,但却是两个导致HCM的错义突变位点。为了鉴定与该区域相互作用的蛋白,以C5序列为诱饵,在酵母双杂交(Y2H)实验中筛选了人心脏cDNA文库。筛选超过7×10⁶个克隆,令人惊讶地发现结构域C5优先与编码cMyBPC C末端片段的克隆结合;通过缺失作图将相互作用区域缩小到结构域C8。使用纯化的重组cMyBPC结构域进行表面等离子体共振分析,以体外测量C5和C8的亲和力(Kₐ = 1×10⁵ mol/L⁻¹)。HCM突变R654H使这种亲和力降低约2倍,而突变N755K使其至少降低10倍。进一步的Y2H实验还证明了cMyBPC的结构域C7和C10之间存在特异性结合。基于这些新的相互作用以及先前的生化和结构数据,我们提出cMyBPC分子三聚化形成围绕粗肌丝的环,一个cMyBPC的结构域C5 - C7与另一个的C8 - C10重叠。我们推测这种相互作用可能动态形成和释放,从而分别限制或促进横桥形成。我们认为HCM突变通过改变cMyBPC环起作用,表明其在粗肌丝结构和调节中的重要性。

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