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线粒体内外膜接触位点在能量传递中的作用。

The role of contact sites between inner and outer mitochondrial membrane in energy transfer.

作者信息

Nicolay K, Rojo M, Wallimann T, Demel R, Hovius R

机构信息

Institute of Molecular Biology and Medical Biotechnology, University of Utrecht, The Netherlands.

出版信息

Biochim Biophys Acta. 1990 Jul 25;1018(2-3):229-33. doi: 10.1016/0005-2728(90)90255-3.

Abstract

Three functions have been suggested to be localized in contact sites between the inner and the outer membrane of mitochondria from mammalian cells: (i) transfer of energy from matrix to cytosol through the action of peripheral kinases; (ii) import of mitochondrial precursor proteins; and (iii) transfer of lipids between outer and inner membrane. In the contact site-related energy transfer a number of kinases localized in the periphery of the mitochondrion play a crucial role. Two examples of such kinases are relevant here: (i) hexokinase isoenzyme I which is capable of binding to the outer aspect of the outer membrane; and (ii) the mitochondrial isoenzyme of creatine kinase which is localized in the intermembrane space. Recently, evidence was presented that both hexokinase and creatine kinase are preferentially localized in contact sites (Adams, V. et al. (1989) Biochim. Biophys. Acta 981, 213-225). The aim of the present experiments was two-fold. First, to establish methods which enable the bioenergetic aspects of energy transfer mediated by kinases in contact sites to be measured. In these experiments emphasis was on hexokinase, while 31P-NMR was the major experimental technique. Second, we wanted to develop methods which can give insight into factors playing a role in the formation of contact sites involved in energy transfer. In the latter approach, mitochondrial creatine kinase was studied using monolayer techniques.

摘要

哺乳动物细胞线粒体内外膜接触位点可能存在三种功能

(i)通过外周激酶的作用将能量从线粒体基质转移至细胞质;(ii)线粒体前体蛋白的导入;(iii)内膜与外膜之间脂质的转移。在与接触位点相关的能量转移过程中,一些定位于线粒体外周的激酶发挥着关键作用。这里有两个此类激酶的例子:(i)己糖激酶同工酶I,它能够结合到外膜的外表面;(ii)定位于膜间隙的肌酸激酶线粒体同工酶。最近有证据表明,己糖激酶和肌酸激酶都优先定位于接触位点(亚当斯,V.等人(1989年)《生物化学与生物物理学报》981,213 - 225)。本实验的目的有两个。首先,建立能够测量接触位点中激酶介导的能量转移的生物能量学方面的方法。在这些实验中重点是己糖激酶,而³¹P - NMR是主要的实验技术。其次,我们想要开发能够深入了解在参与能量转移的接触位点形成过程中起作用的因素的方法。在后一种方法中,使用单层技术研究线粒体肌酸激酶。

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