肝脏中线粒体结合己糖激酶的调节

U. Weiler, I. Riesinger, G. Knoll, D. Brdiczka
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引用次数: 52

摘要

结合己糖激酶和线粒体内室之间的功能偶联已被证实。它在结构上是基于己糖激酶与存在于两个边界膜之间的接触区中的孔蛋白的结合。后者通过电镜观察到抗孔蛋白和己糖激酶在线粒体表面的定位。肝脏中存在的四种同工酶在与线粒体表面结合后的活性差异很大。这是通过使用从上清中分离的四种同工酶的结合研究发现的。同工酶IV完全不结合。同工酶I - iii确实结合并被激活:I, 5.9倍;第二,39倍;III, 1.3倍。这些结果表明,线粒体部分的体内己糖激酶活性比目前观察到的要大得多。此外,同工酶的结合受到代谢物的不同影响。葡萄糖- 6-磷酸仅从线粒体膜上解吸同工酶I,而游离脂肪酸主要释放同工酶II和III。因此,饥饿大鼠肝脏中游离脂肪酸和葡萄糖6-磷酸水平的相互变化可以解释为什么线粒体结合的同工酶II和III减少了10倍,而同工酶I增加了。
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The regulation of mitochondrial-bound hexokinases in the liver

A functional coupling between bound hexokinase and the inner mitochondrial compartment has been shown. It is based structurally on the binding of hexokinase to a pore protein which is present in zones of contact between the two boundary membranes. The latter was observed by electron microscopic localization of antiporin and hexokinase at the mitochondrial surface.

The four isoenzymes present in liver differ considerably in their activity after binding to the mitochondrial surface. This was found by binding studies using the four isoenzymes isolated from the supernatant. Isoenzyme IV did not bind at all. Isoenzymes I–III did bind and became activated: I, 5.9-fold; II, 39-fold; and III, 1.3-fold. These results suggest that the in vivo activity of hexokinase in the mitochondrial fraction is much larger than so far observed.

Furthermore the binding of isoenzymes was differently affected by metabolites. Glucose 6-phosphate exclusively desorbed isoenzyme I from the mitochondrial membrane whereas free fatty acids predominantly liberated isoenzymes II and III. A reciprocal change of the levels of free fatty acids and glucose 6-phosphate in livers of starved rats therefore, can explain why exclusively mitochondrial-bound isoenzymes II and III decreased 10-fold while at the same time isoenzyme I increased.

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