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在大鼠心脏围产期发育过程中,磷酸肌酸穿梭的线粒体成分增强。

Mitochondrial component of the phosphorylcreatine shuttle is enhanced during rat heart perinatal development.

作者信息

Dowell R T

出版信息

Biochem Biophys Res Commun. 1986 Nov 26;141(1):319-25. doi: 10.1016/s0006-291x(86)80371-0.

Abstract

Aerobic metabolism is enhanced during perinatal heart development in parallel with increased cardiac function. The mitochondrial component of the phosphorylcreatine shuttle is important in providing energy for contraction and was examined in weanling and adult rat left ventricle. Creatine kinase activity was enhanced in tissue homogenate and purified cardiac myocytes of adults. Mitochondrial analyses attribute this enhancement to increased creatine kinase activity per milligram mitochondrial protein. Other enzymatic markers of mitochondrial function are not enhanced in activity during perinatal heart growth. The unique response of creatine kinase points to the shuttle mechanism and of mitochondrial creatine kinase, in particular, as a major contributor to heart functional regulation.

摘要

在围产期心脏发育过程中,有氧代谢增强,同时心脏功能也随之提高。磷酸肌酸穿梭系统的线粒体成分对于为心肌收缩提供能量至关重要,本研究对断奶幼鼠和成年大鼠的左心室进行了检测。在成年大鼠的组织匀浆和纯化心肌细胞中,肌酸激酶活性增强。线粒体分析表明,这种增强归因于每毫克线粒体蛋白中肌酸激酶活性的增加。在围产期心脏生长过程中,线粒体功能的其他酶标志物活性并未增强。肌酸激酶的独特反应表明,穿梭机制,尤其是线粒体肌酸激酶,是心脏功能调节的主要贡献者。

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