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心肌肌钙蛋白C的动力学循环:位点II处的钙结合和解离引发缓慢的构象重排。

The kinetic cycle of cardiac troponin C: calcium binding and dissociation at site II trigger slow conformational rearrangements.

作者信息

Hazard A L, Kohout S C, Stricker N L, Putkey J A, Falke J J

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215, USA.

出版信息

Protein Sci. 1998 Nov;7(11):2451-9. doi: 10.1002/pro.5560071123.

Abstract

The goal of this study is to characterize the kinetic mechanism of Ca2+ activation and inactivation of cardiac troponin C (cTnC), the Ca2+ signaling protein which triggers heart muscle contraction. Previous studies have shown that IAANS covalently coupled to Cys84 of wild-type cTnC is sensitive to conformational change caused by Ca2+ binding to the regulatory site II; the present study also utilizes the C35S mutant, in which Cys84 is the lone cysteine, to ensure the specificity of IAANS labeling. Site II Ca2+ affinities for cTnC-wt, cTnC-C35S, cTnC-wt-IAANS2, and cTnC-C35S-IAANS were similar (KD = 2-5 microM at 25 degrees C; KD = 2-8 microM at 4 degrees C), indicating that neither the IAANS label nor the C35S mutation strongly perturbs site II Ca2+ affinity. To directly determine the rate of Ca2+ dissociation from site II, the Ca2+-loaded protein was rapidly mixed with a spectroscopically sensitive chelator in a stopped flow spectrometer. The resulting site II Ca2+ off-rates were k(off) = 700-800 s(-1) (4 degrees C) for both cTnC-wt and cTnC-C35S, yielding calculated macroscopic site II Ca2+ on-rates of k(on) = k(off)/KD = 2-4 x 10(8) M(-1) s(-1) (4 degrees C). As observed for Ca2+ affinities, neither the C35S mutation nor IAANS labeling significantly altered the Ca2+ on- and off-rates. Using IAANS fluorescence as a monitor of the protein conformational state, the intramolecular conformational changes (delta) induced by Ca2+ binding and release at site II were found to be significantly slower than the Ca2+ on- and off-rates. The conformational rate constants measured for cTnC-wt-IAANS2 and cTnC-C35S-IAANS were k(delta on) = 120-210 s(-1) and k(delta off) = 90-260 s(-1) (4 degrees C) . Both conformational events were slowed in cTnC-wt-IAANS2 relative to cTnC-C35S-IAANS, presumably due to the bulky IAANS probe coupled to Cys35. Together, the results provide a nearly complete kinetic description of the Ca2+ activation cycle of isolated cTnC, revealing rapid Ca2+ binding and release at site II accompanied by slow conformational steps that are likely to be retained by the full troponin complex during heart muscle contraction and relaxation.

摘要

本研究的目的是描述心肌肌钙蛋白C(cTnC)的Ca2+激活和失活的动力学机制,cTnC是触发心肌收缩的Ca2+信号蛋白。先前的研究表明,与野生型cTnC的Cys84共价偶联的IAANS对Ca2+结合到调节位点II所引起的构象变化敏感;本研究还利用了C35S突变体,其中Cys84是唯一的半胱氨酸,以确保IAANS标记的特异性。cTnC-wt、cTnC-C35S、cTnC-wt-IAANS2和cTnC-C35S-IAANS的位点II Ca2+亲和力相似(25℃时KD = 2-5 microM;4℃时KD = 2-8 microM),这表明IAANS标记和C35S突变均未强烈干扰位点II的Ca2+亲和力。为了直接测定Ca2+从位点II解离的速率,将加载了Ca2+的蛋白质与光谱敏感螯合剂在停流光谱仪中快速混合。对于cTnC-wt和cTnC-C35S,得到的位点II Ca2+解离速率常数为k(off) = 700-800 s(-1)(4℃),计算得到的宏观位点II Ca2+结合速率常数为k(on) = k(off)/KD = 2-4 x 10(8) M(-1) s(-1)(4℃)。正如在Ca2+亲和力方面所观察到的,C35S突变和IAANS标记均未显著改变Ca2+的结合和解离速率。以IAANS荧光作为蛋白质构象状态的监测指标,发现位点II处Ca2+结合和释放所诱导的分子内构象变化(δ)明显慢于Ca2+的结合和解离速率。cTnC-wt-IAANS2和cTnC-C35S-IAANS的构象速率常数分别为k(δ on) = 120-210 s(-1)和k(δ off) = 90-260 s(-1)(4℃)。相对于cTnC-C35S-IAANS,cTnC-wt-IAANS2中的两个构象事件均减慢,推测是由于与Cys35偶联的庞大IAANS探针所致。总之,这些结果提供了分离的cTnC的Ca2+激活循环的几乎完整的动力学描述,揭示了位点II处Ca2+的快速结合和释放,同时伴随着缓慢的构象步骤,这些步骤在心肌收缩和舒张过程中可能被完整的肌钙蛋白复合物保留。

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