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心肌肌钙蛋白C突变EF手型结构中Ca2+结合活性的差异恢复

Differential recovery of Ca2+ binding activity in mutated EF-hands of cardiac troponin C.

作者信息

Dotson D G, Putkey J A

机构信息

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

出版信息

J Biol Chem. 1993 Nov 15;268(32):24067-73.

PMID:8226952
Abstract

Previous studies showed that conversion of the first Ca2+ ligand in Ca(2+)-binding sites III and IV from Asp to Ala decreased the affinity of cardiac TnC (cTnC) for the thin filament. Here, the functional consequences of mutation of the second ligand in the Ca(2+)-binding sites of cTnC were determined. Equilibrium dialysis and Tyr fluorescence studies showed that conversion of the second Ca2+ ligand to Ala (Asp-67, site II; Asn-107, site III; and Asn-143, site IV) inactivated all three Ca(2+)-binding sites in the free protein. Ca2+ binding to the mutated site II was not recovered upon association with a troponin complex, and proteins with this mutation were unable to regulate Ca(2+)-dependent ATPase activity in TnC-extracted myofibrils. However, Ca2+ binding was recovered at the mutated sites III and IV under the same conditions. Sequential addition of active and inactive cTnC proteins in a myofibril ATPase assay suggested that that Mg2+ binding was not recovered and that the recovered Ca2+ affinity of the mutated sites III and IV was much lower than that of the wild type in that the Ca2+ concentrations required for apparent thin filament binding by proteins containing mutations at sites III and/or IV were significantly greater than that required for the wild-type protein.

摘要

先前的研究表明,将钙结合位点III和IV中的第一个Ca2+配体从天冬氨酸转换为丙氨酸会降低心肌肌钙蛋白C(cTnC)对细肌丝的亲和力。在此,确定了cTnC钙结合位点中第二个配体突变的功能后果。平衡透析和酪氨酸荧光研究表明,将第二个Ca2+配体转换为丙氨酸(位点II中的天冬氨酸-67;位点III中的天冬酰胺-107;位点IV中的天冬酰胺-143)会使游离蛋白中的所有三个钙结合位点失活。与肌钙蛋白复合物结合后,突变的位点II无法恢复Ca2+结合,具有这种突变的蛋白无法调节TnC提取的肌原纤维中Ca2+依赖性ATP酶活性。然而,在相同条件下,突变的位点III和IV可恢复Ca2+结合。在肌原纤维ATP酶测定中顺序添加活性和非活性cTnC蛋白表明,Mg2+结合无法恢复,并且突变的位点III和IV恢复的Ca2+亲和力远低于野生型,因为含有位点III和/或IV突变的蛋白与细肌丝明显结合所需的Ca2+浓度显著高于野生型蛋白所需的浓度。

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