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在表达快肌骨骼肌肌浆网Ca2+ -ATP酶的转基因心脏中增强心肌收缩力并增加Ca2+转运功能。

Enhanced myocardial contractility and increased Ca2+ transport function in transgenic hearts expressing the fast-twitch skeletal muscle sarcoplasmic reticulum Ca2+-ATPase.

作者信息

Loukianov E, Ji Y, Grupp I L, Kirkpatrick D L, Baker D L, Loukianova T, Grupp G, Lytton J, Walsh R A, Periasamy M

机构信息

Division of Cardiology, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0542, USA.

出版信息

Circ Res. 1998 Nov 2;83(9):889-97. doi: 10.1161/01.res.83.9.889.

Abstract

In this study, we investigated whether the fast-twitch skeletal muscle sarco(endo)plasmic reticulum Ca2+ transport pump (SERCA1a) can functionally substitute the cardiac SERCA2a isoform and how its overexpression affects cardiac contractility. For this purpose, we generated transgenic (TG) mice that specifically overexpress SERCA1a in the heart, using the cardiac-specific alpha-myosin heavy chain promoter. Ectopic expression of SERCA1a resulted in a 2.5-fold increase in the amount of total SERCA protein. At the same time, the level of the endogenous SERCA2a protein was decreased by 50%, whereas the level of other muscle proteins, including calsequestrin, phospholamban, actin, and tropomyosin, remained unchanged. The steady-state level of SERCA phosphoenzyme intermediate was increased 2.5-fold, and the maximal velocity of Ca2+ uptake was increased 1.7-fold in TG hearts, demonstrating that the overexpressed protein is functional. Although the basal cytosolic calcium signal was decreased by 38% in TG cardiomyocytes, the amplitude of cytosolic calcium signal was increased by 71.8%. The rate of calcium resequestration was also increased in TG myocytes, which was reflected by a 51.6% decrease in the normalized time to 80% decay of calcium signal. This resulted in considerably increased peak rates of myocyte shortening and relengthening (50.0% and 66.6%, respectively). Cardiac functional analysis using isolated work-performing heart preparations revealed significantly faster rates of contraction and relaxation in TG hearts (41.9% and 39.5%, respectively). The time to peak pressure and the time to half-relaxation were shorter (29.1% and 32.7%, respectively). In conclusion, our study demonstrates that the SERCA1a pump can functionally substitute endogenous SERCA2a, and its overexpression significantly enhances Ca2+ transport and contractile function of the myocardium. These results also demonstrate that the SERCA pump level is a critical determinant of cardiac contractility.

摘要

在本研究中,我们调查了快肌骨骼肌肌浆(内质)网Ca2+转运泵(SERCA1a)是否能在功能上替代心脏SERCA2a亚型,以及其过表达如何影响心脏收缩力。为此,我们使用心脏特异性α-肌球蛋白重链启动子,生成了在心脏中特异性过表达SERCA1a的转基因(TG)小鼠。SERCA1a的异位表达导致总SERCA蛋白量增加了2.5倍。同时,内源性SERCA2a蛋白水平降低了50%,而包括肌集钙蛋白、受磷蛋白、肌动蛋白和原肌球蛋白在内的其他肌肉蛋白水平保持不变。TG心脏中SERCA磷酸酶中间体的稳态水平增加了2.5倍,Ca2+摄取的最大速度增加了1.7倍,表明过表达的蛋白具有功能。虽然TG心肌细胞中的基础胞质钙信号降低了38%,但胞质钙信号的幅度增加了71.8%。TG心肌细胞中的钙再摄取速率也增加了,这表现为钙信号衰减至80%的标准化时间减少了51.6%。这导致心肌细胞缩短和再延长的峰值速率显著增加(分别为50.0%和66.6%)。使用离体工作心脏标本进行的心脏功能分析显示,TG心脏的收缩和舒张速率明显加快(分别为41.9%和39.5%)。达到峰值压力的时间和半舒张时间缩短(分别为29.1%和32.7%)。总之,我们的研究表明,SERCA1a泵可以在功能上替代内源性SERCA2a,其过表达显著增强了心肌的Ca2+转运和收缩功能。这些结果还表明,SERCA泵水平是心脏收缩力的关键决定因素。

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