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结合Cd2+的心肌肌钙蛋白C调节结构域的结构揭示了一种封闭构象和独特的离子配位。

The structure of cardiac troponin C regulatory domain with bound Cd2+ reveals a closed conformation and unique ion coordination.

作者信息

Zhang Xiaolu Linda, Tibbits Glen F, Paetzel Mark

机构信息

Department of Molecular Biology and Biochemistry, Simon Fraser University, South Science Building, 8888 University Drive, Burnaby, British Columbia V5A 1S6, Canada.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 May;69(Pt 5):722-34. doi: 10.1107/S0907444913001182. Epub 2013 Apr 11.

Abstract

The amino-terminal domain of cardiac troponin C (cNTnC) is an essential Ca(2+) sensor found in cardiomyocytes. It undergoes a conformational change upon Ca(2+) binding and transduces the signal to the rest of the troponin complex to initiate cardiac muscle contraction. Two classical EF-hand motifs (EF1 and EF2) are present in cNTnC. Under physiological conditions, only EF2 binds Ca(2+); EF1 is a vestigial site that has lost its function in binding Ca(2+) owing to amino-acid sequence changes during evolution. Proteins with EF-hand motifs are capable of binding divalent cations other than calcium. Here, the crystal structure of wild-type (WT) human cNTnC in complex with Cd(2+) is presented. The structure of Cd(2+)-bound cNTnC with the disease-related mutation L29Q, as well as a structure with the residue differences D2N, V28I, L29Q and G30D (NIQD), which have been shown to have functional importance in Ca(2+) sensing at lower temperatures in ectothermic species, have also been determined. The structures resemble the overall conformation of NMR structures of Ca(2+)-bound cNTnC, but differ significantly from a previous crystal structure of Cd(2+)-bound cNTnC in complex with deoxycholic acid. The subtle structural changes observed in the region near the mutations may play a role in the increased Ca(2+) affinity. The 1.4 Å resolution WT cNTnC structure, which is the highest resolution structure yet obtained for cardiac troponin C, reveals a Cd(2+) ion coordinated in the canonical pentagonal bipyramidal geometry in EF2 despite three residues in the loop being disordered. A Cd(2+) ion found in the vestigial ion-binding site of EF1 is coordinated in a noncanonical `distorted' octahedral geometry. A comparison of the ion coordination observed within EF-hand-containing proteins for which structures have been solved in the presence of Cd(2+) is presented. A refolded WT cNTnC structure is also presented.

摘要

心肌肌钙蛋白C(cNTnC)的氨基末端结构域是心肌细胞中一种重要的Ca(2+)传感器。它在结合Ca(2+)后会发生构象变化,并将信号传递给肌钙蛋白复合体的其他部分以启动心肌收缩。cNTnC中存在两个经典的EF手基序(EF1和EF2)。在生理条件下,只有EF2能结合Ca(2+);EF1是一个退化位点,由于进化过程中的氨基酸序列变化,它失去了结合Ca(2+)的功能。具有EF手基序的蛋白质能够结合除钙以外的二价阳离子。在此,展示了野生型(WT)人cNTnC与Cd(2+)复合物的晶体结构。还确定了与疾病相关突变L29Q结合Cd(2+)的cNTnC结构,以及具有残基差异D2N、V28I、L29Q和G30D(NIQD)的结构,这些残基差异已被证明在变温动物较低温度下的Ca(2+)传感中具有功能重要性。这些结构类似于结合Ca(2+)的cNTnC的NMR结构的整体构象,但与先前结合Cd(2+)的cNTnC与脱氧胆酸复合物的晶体结构有显著差异。在突变附近区域观察到的细微结构变化可能在增加的Ca(2+)亲和力中起作用。1.4 Å分辨率的WT cNTnC结构是迄今获得的心肌肌钙蛋白C的最高分辨率结构,尽管环中的三个残基无序,但显示EF2中有一个Cd(2+)离子以典型的五角双锥几何构型配位。在EF1的退化离子结合位点发现的一个Cd(2+)离子以非典型的“扭曲”八面体几何构型配位。展示了在已解析结构的含EF手蛋白中观察到的Cd(2+)存在下的离子配位比较。还展示了重折叠的WT cNTnC结构。

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