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线粒体外周ADP动态分隔的实验证据:在模拟细胞内胶体渗透压的条件下,线粒体腺苷酸激酶和线粒体己糖激酶与氧化磷酸化的偶联。

Experimental evidence for dynamic compartmentation of ADP at the mitochondrial periphery: coupling of mitochondrial adenylate kinase and mitochondrial hexokinase with oxidative phosphorylation under conditions mimicking the intracellular colloid osmotic pressure.

作者信息

Laterveer F D, Nicolay K, Gellerich F N

机构信息

Department of in vivo NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University, The Netherlands.

出版信息

Mol Cell Biochem. 1997 Sep;174(1-2):43-51.

PMID:9309664
Abstract

Dextran M20 was added to isolated rat liver mitochondria to mimic cytosolic macromolecules. Under these conditions, the morphological changes in the mitochondrial periphery that occur upon isolation of the organelle are restored, i.e. the volume of the intermembrane space decreases and the contact site frequency increases. The ADP routing from mitochondrial kinases at various locations was investigated by using the activities of oxidative phosphorylation and externally added pyruvate kinase as sensors for ADP transport into the matrix and extramitochondrial compartment, respectively. The studies reveal that a significant fraction of the ADP generated by either adenylate kinase in the intermembrane space or by outer membrane bound hexokinase isozyme I, is not accessible to extramitochondrial pyruvate kinase. Quantitative information on the ADP compartmentation in rat liver mitochondria was obtained by comparing the ADP supply from mitochondrial kinases to oxidative phosphorylation with that of non-bound, extramitochondrially located kinases. This approach allowed us to estimate the ADP diffusion gradients which were present across the outer membrane and between the compartment formed by bound hexokinase and the extramitochondrial compartment. In the presence of 10% dextran M20 these ADP gradients amounted to approximately 12 microM. The possible role of mitochondrial kinases in ADP transport into mitochondria in vivo is discussed.

摘要

将葡聚糖M20添加到分离的大鼠肝线粒体中,以模拟胞质大分子。在这些条件下,细胞器分离时线粒体周边发生的形态变化得以恢复,即膜间隙体积减小,接触位点频率增加。通过使用氧化磷酸化活性和外部添加的丙酮酸激酶分别作为ADP转运到基质和线粒体外隔室的传感器,研究了不同位置线粒体激酶的ADP路由。研究表明,膜间隙中的腺苷酸激酶或外膜结合的己糖激酶同工酶I产生的相当一部分ADP,线粒体外的丙酮酸激酶无法获取。通过比较线粒体激酶向氧化磷酸化提供的ADP与非结合的线粒体外激酶的ADP供应,获得了大鼠肝线粒体中ADP区室化的定量信息。这种方法使我们能够估计跨外膜以及由结合的己糖激酶形成的区室与线粒体外区室之间存在的ADP扩散梯度。在存在10%葡聚糖M20的情况下,这些ADP梯度约为12微摩尔。讨论了线粒体激酶在体内ADP转运到线粒体中的可能作用。

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