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线粒体肌酸激酶的结构及其膜结合特性。

The structure of mitochondrial creatine kinase and its membrane binding properties.

作者信息

Schnyder T, Rojo M, Furter R, Wallimann T

机构信息

Institute for Cell Biology, ETH-Hönggerberg, Zürich, Switzerland.

出版信息

Mol Cell Biochem. 1994 Apr-May;133-134:115-23. doi: 10.1007/BF01267951.

Abstract

The biochemical and biophysical characterization of the mitochondrial creatine kinase (Mi-CK) from chicken cardiac muscle is reviewed with emphasis on the structure of the octameric oligomer by electron microscopy and on its membrane binding properties. Information about shape, molecular symmetry and dimensions of the Mi-CK octamer, as obtained by different sample preparation techniques in combination with image processing methods, are compared. The organization of the four dimeric subunits into the Mi-CK complex as apparent as apparent in the end-on projections is discussed and the consistently observed high binding affinity of the four-fold symmetric end-on faces towards many support films and towards each other is outlined. A study on the oligomeric state of the enzyme in solution and in intact mitochondria, using chemical crosslinking reagents, is presented together with the results of a search for a possible linkage of Mi-CK with the adenine nucleotide translocator (ANT). The nature of Mi-CK binding to model membranes, demonstrating that rather the octameric than the dimeric subspecies is involved in lipid interaction and membrane contact formation, is resumed and put into relation to our structural observations. The findings are discussed in light of a possible in vivo function of the Mi-CK octamer bridging the gap between outer and inner mitochondrial membranes at the contact sites.

摘要

本文综述了鸡心肌线粒体肌酸激酶(Mi-CK)的生化和生物物理特性,重点介绍了通过电子显微镜观察到的八聚体低聚物结构及其膜结合特性。比较了通过不同样品制备技术结合图像处理方法获得的有关Mi-CK八聚体的形状、分子对称性和尺寸的信息。讨论了四个二聚体亚基在Mi-CK复合物中的排列方式,这种排列方式在端视图中很明显,并概述了始终观察到的四重对称端面与许多支持膜以及彼此之间的高结合亲和力。介绍了一项使用化学交联试剂研究溶液中和完整线粒体中该酶寡聚状态的研究,以及寻找Mi-CK与腺嘌呤核苷酸转位酶(ANT)可能联系的结果。恢复了Mi-CK与模型膜结合的性质,表明参与脂质相互作用和膜接触形成的是八聚体而非二聚体亚类,并将其与我们的结构观察结果联系起来。根据Mi-CK八聚体在体内可能的功能,即在接触位点弥合线粒体外膜和内膜之间的间隙,对这些发现进行了讨论。

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