磷蛋白在心脏和慢抽搐骨骼肌肌浆网中调节Ca2+运输。

M A Movsesian, G L Morris, J H Wang, J Krall
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引用次数: 0

摘要

在兔和犬心脏、慢抽动和快抽动骨骼肌制备的微粒体中,研究了磷蛋白和肌浆网钙(2+)转运atp酶水平之间的相关性以及磷蛋白介导的肌浆网钙(2+)转运的刺激程度。快抽动骨骼肌制备的微粒体中不存在磷蛋白,但在心脏和慢抽动骨骼肌制备的微粒体中存在相当水平的磷蛋白。然而,在慢抽搐骨骼肌制备的微粒体中,钙(2+)转运atp酶的水平高于心肌制备的微粒体,并且心肌制备的微粒体中磷蛋白与钙(2+)转运atp酶的比率比慢抽搐骨骼肌制备的微粒体高几倍。camp依赖性蛋白激酶磷酸化或抗磷蛋白单克隆抗体孵育后,仅在心肌微粒体中观察到atp依赖性Ca2+转运的刺激。这些观察结果表明,虽然磷蛋白存在于心脏和慢抽动骨骼肌中,但可能仅在前者中参与了肌浆网Ca2+运输的激素调节,而在慢抽动骨骼肌肌浆网中缺乏磷蛋白介导的Ca2+运输刺激可能是由于该组织中磷蛋白与Ca(2+)运输atp酶的比例较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phospholamban-modulated Ca2+ transport in cardiac and slow twitch skeletal muscle sarcoplasmic reticulum.

The correlation between phospholamban and sarcoplasmic reticulum Ca(2+)-transporting ATPase levels and the magnitude of phospholamban-mediated stimulation of sarcoplasmic reticulum Ca2+ transport was examined in microsomes prepared from rabbit and canine cardiac, slow twitch and fast twitch skeletal muscle. Phospholamban was absent from microsomes prepared from fast twitch skeletal muscle but present at comparable levels in microsomes prepared from cardiac and slow twitch skeletal muscle. Levels of Ca(2+)-transporting ATPase were higher in microsomes prepared from slow twitch skeletal muscle than in microsomes prepared from cardiac muscle, however, and ratios of phospholamban to Ca(2+)-transporting ATPase were several fold greater in microsomes prepared from cardiac muscle than in microsomes prepared from slow twitch skeletal muscle. Stimulation of ATP-dependent Ca2+ transport following phosphorylation of phospholamban by cAMP-dependent protein kinase or incubation with anti-phospholamban monoclonal antibody was observed only in cardiac muscle microsomes. These observations indicate that phospholamban, while present in both cardiac and slow twitch skeletal muscle, may be involved in the hormonal regulation of sarcoplasmic reticulum Ca2+ transport only in the former, and that the lack of phospholamban-mediated stimulation of Ca2+ transport in slow twitch skeletal muscle sarcoplasmic reticulum may result from the lower ratio of phospholamban to Ca(2+)-transporting ATPase in this tissue.

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