Department of Biology, Wingate University, Wingate, North Carolina 28174, United States.
Biochemistry. 2012 May 1;51(17):3614-21. doi: 10.1021/bi300187k. Epub 2012 Apr 16.
The objective of this work was to investigate the effect of hypertrophic cardiomyopathy-linked A8V and E134D mutations in cardiac troponin C (cTnC) on the response of reconstituted thin filaments to calcium upon phosphorylation of cardiac troponin I (cTnI) by protein kinase A. The phosphorylation of cTnI at protein kinase A sites was mimicked by the S22D/S23D double mutation in cTnI. Our results demonstrate that the A8V and E134D mutations had no effect on the extent of calcium desensitization of reconstituted thin filaments induced by cTnI pseudophosphorylation. However, the A8V mutation enhanced the effect of cTnI pseudophosphorylation on the rate of dissociation of calcium from reconstituted thin filaments and on the calcium dependence of actomyosin ATPase. Consequently, while the A8V mutation still led to a slower rate of dissociation of calcium from reconstituted thin filaments upon pseudophosphorylation of cTnI, the ability of the A8V mutation to decrease the rate of calcium dissociation was weakened. In addition, the ability of the A8V mutation to sensitize actomyosin ATPase to calcium was weakened after cTnI was replaced by the phosphorylation mimetic of cTnI. Consistent with the hypothesis that the E134D mutation is benign, it exerted a minor to no effect on the rate of dissociation of calcium from reconstituted thin filaments or on the calcium sensitivity of actomyosin ATPase, regardless of the cTnI phosphorylation status. In conclusion, our study enhances our understanding of how cardiomyopathy-linked cTnC mutations affect the response of reconstituted thin filaments to calcium upon cTnI phosphorylation.
本研究旨在探讨肥厚型心肌病相关 A8V 和 E134D 突变对肌钙蛋白 C(cTnC)的影响,以及该突变如何影响受蛋白激酶 A(PKA)磷酸化的肌钙蛋白 I(cTnI)对再构成的细肌丝钙敏感性的影响。通过 cTnI 的 S22D/S23D 双突变模拟 cTnI 的 PKA 磷酸化位点。我们的研究结果表明,A8V 和 E134D 突变对 cTnI 假磷酸化诱导的再构成细肌丝钙脱敏程度没有影响。然而,A8V 突变增强了 cTnI 假磷酸化对钙从再构成细肌丝解离速率以及肌球蛋白 ATP 酶钙依赖性的影响。因此,虽然 A8V 突变仍然导致 cTnI 假磷酸化后钙从再构成细肌丝解离的速率较慢,但 A8V 突变降低钙解离速率的能力减弱。此外,在 cTnI 被 cTnI 的磷酸化模拟物取代后,A8V 突变对肌球蛋白 ATP 酶对钙的敏感性的增强作用减弱。与 E134D 突变良性的假设一致,无论 cTnI 磷酸化状态如何,E134D 突变对钙从再构成的细肌丝解离速率或肌球蛋白 ATP 酶钙敏感性的影响都较小或没有。总之,我们的研究增强了我们对肌病相关 cTnC 突变如何影响 cTnI 磷酸化后再构成的细肌丝对钙的反应的理解。