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甘油激酶与大鼠肝脏线粒体外膜的结合:其在代谢调节中的重要性。

The binding of glycerol kinase to the outer membrane of rat liver mitochondria: its importance in metabolic regulation.

作者信息

Ostlund A K, Göhring U, Krause J, Brdiczka D

出版信息

Biochem Med. 1983 Oct;30(2):231-45. doi: 10.1016/0006-2944(83)90089-3.

Abstract

Glycerol kinase was found to associate with the hexokinase binding protein. The binding of glycerol kinase has a high specificity as illustrated by the fact that the magnitude of binding was reduced by glycerophosphate and antibodies against the hexokinase binding protein. A possible function of glycerol kinase binding to the mitochondria with respect to metabolic regulation is proposed for the following reasons: (i) Glycerol kinase seems to bind to the same binding protein as hexokinase. (ii) Both kinases were observed to be reversibly bound to the mitochondria in different metabolic situations, i.e., 10% of total cellular activity from both kinases is bound in starved rats whereas no activity of glycerol kinase and 30% of hexokinase become bound in fed rats. (iii) The kinetic properties of the associated glycerol kinase change in an analogous manner to those known for structure-bound hexokinase. (iv) With the binding of glycerol kinase to the mitochondria, it is possible to propose a metabolic pathway for glycerol oxidation to dihydroxyacetone phosphate by a combined action involving the enzyme, glycerol phosphate oxidase, and oxidative phosphorylation.

摘要

甘油激酶被发现与己糖激酶结合蛋白相关联。甘油激酶的结合具有高度特异性,这一点可从以下事实得到说明:甘油磷酸酯和抗己糖激酶结合蛋白的抗体可降低结合量。基于以下原因,提出了甘油激酶与线粒体结合在代谢调节方面的一种可能功能:(i)甘油激酶似乎与己糖激酶结合到相同的结合蛋白上。(ii)在不同的代谢情况下,观察到这两种激酶都可逆地结合到线粒体上,即饥饿大鼠中两种激酶的总细胞活性的10%被结合,而在喂食大鼠中,甘油激酶无活性,30%的己糖激酶被结合。(iii)相关甘油激酶的动力学性质与已知的与结构结合的己糖激酶的动力学性质以类似方式发生变化。(iv)随着甘油激酶与线粒体的结合,有可能通过涉及甘油磷酸氧化酶和氧化磷酸化的联合作用,提出一条甘油氧化为磷酸二羟丙酮的代谢途径。

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