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凋亡蛋白 HAX-1 介导了抗肌球蛋白结合蛋白 C 的一半对心脏钙离子循环和收缩性的抑制活性。

The antiapoptotic protein HAX-1 mediates half of phospholamban's inhibitory activity on calcium cycling and contractility in the heart.

机构信息

Department of Pharmacology and Systems Physiology, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267.

Department of Pharmacology and Systems Physiology, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267; Department of Molecular Biology, Center of Basic Research, Biomedical Research Foundation, Academy of Athens, 115 27 Athens, Greece.

出版信息

J Biol Chem. 2018 Jan 5;293(1):359-367. doi: 10.1074/jbc.RA117.000128. Epub 2017 Nov 17.

Abstract

The antiapoptotic protein HAX-1 (HS-associated protein X-1) localizes to sarcoplasmic reticulum (SR) in the heart and interacts with the small membrane protein phospholamban (PLN), inhibiting the cardiac sarco/endoplasmic reticulum calcium ATPase 2a (SERCA2a) in the regulation of overall calcium handling and heart muscle contractility. However, because global HAX-1 deletion causes early lethality, how much endogenous HAX-1 contributes to PLN's inhibitory activity on calcium cycling is unknown. We therefore generated a cardiac-specific and inducible knock-out mouse model. HAX-1 ablation in the adult heart significantly increased contractile parameters and calcium kinetics, associated with increased SR calcium load. These changes occurred without any changes in the protein expression of SERCA2a, PLN, and ryanodine receptor or in the PLN phosphorylation status. The enhanced calcium cycling in the HAX-1-depleted heart was mediated through increases in the calcium affinity of SERCA2a and reduced PLN-SERCA2a binding. Comparison of the HAX-1 deletion-induced stimulatory effects with those elicited by PLN ablation indicated that HAX-1 mediates ∼50% of the PLN-associated inhibitory effects in the heart. Stimulation with the inotropic and lusitropic agent isoproterenol eliminated the differences among wild-type, HAX-1-deficient, and PLN-deficient hearts, and maximally stimulated contractile and calcium kinetic parameters were similar among these three groups. Furthermore, PLN overexpression in the HAX-1-null cardiomyocytes did not elicit any inhibitory effects, indicating that HAX-1 may limit PLN activity. These findings suggest that HAX-1 is a major mediator of PLN's inhibitory activity and a critical gatekeeper of SR calcium cycling and contractility in the heart.

摘要

凋亡蛋白 HAX-1(HS 相关蛋白 X-1)在心脏中定位于肌浆网(SR),并与小膜蛋白磷酸化酶(PLN)相互作用,抑制心脏肌浆/内质网钙 ATP 酶 2a(SERCA2a),从而调节整体钙处理和心肌收缩性。然而,由于全局 HAX-1 缺失会导致早期致死性,因此内源性 HAX-1 对钙循环中 PLN 抑制活性的贡献程度尚不清楚。因此,我们生成了一种心脏特异性和诱导型敲除小鼠模型。成年心脏中 HAX-1 的缺失显著增加了收缩参数和钙动力学,与 SR 钙负荷增加有关。这些变化发生时,SERCA2a、PLN 和兰尼碱受体的蛋白表达或 PLN 磷酸化状态没有任何变化。在 HAX-1 耗竭的心脏中,增强的钙循环是通过增加 SERCA2a 的钙亲和力和减少 PLN-SERCA2a 结合来介导的。将 HAX-1 缺失引起的刺激作用与 PLN 缺失引起的刺激作用进行比较表明,HAX-1 介导了心脏中约 50%的 PLN 相关抑制作用。变力性和变时性药物异丙肾上腺素的刺激消除了野生型、HAX-1 缺陷型和 PLN 缺陷型心脏之间的差异,并且这些三组的最大收缩和钙动力学参数相似。此外,在 HAX-1 缺失的心肌细胞中过表达 PLN 并没有引起任何抑制作用,这表明 HAX-1 可能限制了 PLN 的活性。这些发现表明,HAX-1 是 PLN 抑制活性的主要介质,是心脏 SR 钙循环和收缩性的关键调控因子。

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