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钙结合诱导心肌肌钙蛋白C金属结合位点的构象变化。

Conformational changes in the metal-binding sites of cardiac troponin C induced by calcium binding.

作者信息

Krudy G A, Brito R M, Putkey J A, Rosevear P R

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical School, Houston 77225.

出版信息

Biochemistry. 1992 Feb 18;31(6):1595-602. doi: 10.1021/bi00121a003.

Abstract

Isotope labeling of recombinant normal cardiac troponin C (cTnC3) with 15N-enriched amino acids and multidimensional NMR were used to assign the downfield-shifted amide protons of Gly residues at position 6 in Ca(2+)-binding loops II, III, and IV, as well as tightly hydrogen-bonded amides within the short antiparallel beta-sheets between pairs of Ca(2+)-binding loops. The amide protons of Gly70, Gly110, and Gly146 were found to be shifted significantly downfield from the remaining amide proton resonances in Ca(2+)-saturated cTnC3. No downfield-shifted Gly resonance was observed from the naturally inactive site I. Comparison of downfield-shifted amide protons in the Ca(2+)-saturated forms of cTnC3 and CBM-IIA, a mutant having Asp65 replaced by Ala, demonstrated that Gly70 is hydrogen bonded to the carboxylate side chain of Asp65. Thus, the hydrogen bond between Gly and Asp in positions 6 and 1, respectively, of the Ca(2+)-binding loop appears crucial for maintaining the integrity of the helix-loop-helix Ca(2+)-binding sites. In the apo- form of cTnC3, only Gly70 was found to be shifted significantly downfield with respect to the remaining amide proton resonances. Thus, even in the absence of Ca2+ at binding site II, the amide proton of Gly70 is strongly hydrogen bonded to the side-chain carboxylate of Asp65. The amide protons of Ile112 and Ile148 in the C-terminal domain and Ile36 in the N-terminal domain data-sheets exhibit chemical shifts consistent with hydrogen-bond formation between the pair of Ca(2+)-binding loops in each domain of Ca(2+)-saturated cTnC3.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用富含(^{15}N)的氨基酸对重组正常心肌肌钙蛋白C(cTnC3)进行同位素标记,并结合多维核磁共振技术,对钙结合环II、III和IV中第6位甘氨酸残基的低场位移酰胺质子,以及成对钙结合环之间短反平行β折叠内紧密氢键结合的酰胺进行归属。研究发现,在(Ca^{2 +})饱和的cTnC3中,甘氨酸70、甘氨酸110和甘氨酸146的酰胺质子相对于其余酰胺质子共振信号显著向低场位移。在天然无活性的位点I未观察到低场位移的甘氨酸共振信号。比较(Ca^{2 +})饱和形式的cTnC3和将天冬氨酸65替换为丙氨酸的突变体CBM-IIA中低场位移的酰胺质子,结果表明甘氨酸70与天冬氨酸65的羧基侧链形成氢键。因此,钙结合环中分别位于第6位和第1位的甘氨酸和天冬氨酸之间的氢键,对于维持螺旋-环-螺旋钙结合位点的完整性似乎至关重要。在cTnC3的脱辅基形式中,仅发现甘氨酸70相对于其余酰胺质子共振信号显著向低场位移。因此,即使在结合位点II不存在(Ca^{2 +})的情况下,甘氨酸70的酰胺质子仍与天冬氨酸65的侧链羧基形成强氢键。在(Ca^{2 +})饱和的cTnC3每个结构域中,C端结构域的异亮氨酸112和异亮氨酸148以及N端结构域的数据表中的异亮氨酸36的酰胺质子化学位移,与成对钙结合环之间形成氢键一致。(摘要截断于250字)

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