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再探心脏线粒体肌酸激酶:线粒体外膜对于磷酸肌酸生成与氧化磷酸化的偶联并不重要。

Heart mitochondrial creatine kinase revisited: the outer mitochondrial membrane is not important for coupling of phosphocreatine production to oxidative phosphorylation.

作者信息

Kuznetsov A V, Khuchua Z A, Vassil'eva E V, Medved'eva N V, Saks V A

机构信息

Laboratory of Bioenergetics, USSR Research Center for Cardiology, Moscow.

出版信息

Arch Biochem Biophys. 1989 Jan;268(1):176-90. doi: 10.1016/0003-9861(89)90578-x.

Abstract

The state of mitochondrial creatine kinase (CKmi-mi) in intact dog heart mitochondria and mitoplasts and the mechanism of its functional coupling with the oxidative phosphorylation system have been reinvestigated under different osmotic conditions and ionic compositions of the medium. It has been established that in a medium which mimics the cardiac cell cytoplasma, dissociation of CKmi-mi from the membrane of mitoplasts increases when the mitoplasts are swollen due to hypoosmotic treatment. It was shown by EPR that hypoosmotic treatment results in the enhancement of the mobility of phospholipids in the membrane bilayer. It has been also shown that when CKmi-mi is detached from the inner membrane in intact mitochondria in isotonic KCl solution, the effects of the coupling between CKmi-mi and oxidative phosphorylation via ATP/ADP translocase disappear in spite of the presence of CKmi-mi in the intermembrane space and intactness of the outer mitochondrial membrane. Therefore, this coupling cannot be explained by the "compartmented coupling" mechanism or "dynamic adenine nucleotide compartmentation" in the intermembrane space due to diffusion limitation for adenine nucleotides through the outer mitochondrial membrane, as has been supposed by several authors (F.N. Gellerich et al. (1987) Biochim. Biophys. Acta 890, 117-126; S.P.J. Brooks and C.H. Suelter (1987) Arch. Biochem. Biophys. 253, 122-132). The data obtained show that the displacement of the enzyme from the membrane results in significantly increased sensitivity of the coupled processes of aerobic phosphocreatine synthesis to inhibition by the product, phosphocreatine. Thus, all results show that under physiological osmotic and ionic conditions CKmi-mi remains firmly attached to the inner mitochondrial membrane and effectively coupled with ATP/ADP translocase due to intimate dynamic interaction between those proteins.

摘要

在不同渗透条件和介质离子组成下,对完整犬心脏线粒体和线粒体膜间腔中肌酸激酶(CKmi-mi)的状态及其与氧化磷酸化系统功能偶联的机制进行了重新研究。已经确定,在模拟心肌细胞质的介质中,当线粒体膜间腔因低渗处理而肿胀时,CKmi-mi与线粒体膜间腔膜的解离增加。电子顺磁共振(EPR)表明,低渗处理会导致膜双层中磷脂流动性增强。还表明,当CKmi-mi在等渗KCl溶液中从完整线粒体的内膜脱离时,尽管膜间腔中存在CKmi-mi且线粒体外膜完整,但通过ATP/ADP转位酶介导的CKmi-mi与氧化磷酸化之间的偶联作用消失。因此,这种偶联不能用一些作者所推测的由于腺嘌呤核苷酸通过线粒体外膜的扩散受限而导致的膜间腔“分隔偶联”机制或“动态腺嘌呤核苷酸分隔”来解释(F.N. Gellerich等人,(1987年)《生物化学与生物物理学报》890, 117 - 126;S.P.J. Brooks和C.H. Suelter,(1987年)《生物化学与生物物理学报》253, 122 - 132)。所获得的数据表明,酶从膜上的位移导致有氧磷酸肌酸合成的偶联过程对产物磷酸肌酸抑制的敏感性显著增加。因此,所有结果表明,在生理渗透和离子条件下,CKmi-mi通过这些蛋白质之间紧密的动态相互作用,牢固地附着在线粒体内膜上,并与ATP/ADP转位酶有效偶联。

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