Benz R, Kottke M, Brdiczka D
Fakultät für Biologie, Universität Konstanz, F.R.G.
Biochim Biophys Acta. 1990 Mar;1022(3):311-8. doi: 10.1016/0005-2736(90)90279-w.
The outer mitochondrial membrane pore at a voltage above 20 to 30 mV can adopt a state of low conductance which may restrict free permeability of mitochondrial substrates. In order to obtain insight into the physiological meaning of this property we took advantage of the fact that the low conductance pore state could be induced by a polyanion in lipid bilayer membranes as well as in intact mitochondria. Upon reconstitution in artificial bilayers the pore in this substate became exclusively cation selective when the polarity of the applied voltage was negative on the cis-side. This behaviour of the pore would explain why induction of the low conductance pore state in intact mitochondria led to a complete inhibition of mitochondrial intermembranous kinases, such as creatine kinase and adenylate kinase, but not of peripheral kinases, for example hexokinase, when utilizing external ATP. The possibility that the inner membrane potential might be transduced to the outer membrane in the contact sites, suggests the existence of cation selective pores in these sites. This aspect may be important in the regulation of peripheral kinases like creatine kinase, nucleoside diphosphate kinase and adenylate kinase which are located behind the outer mitochondrial membrane.
线粒体外膜孔在电压高于20至30 mV时可呈现低电导状态,这可能会限制线粒体底物的自由通透。为深入了解此特性的生理意义,我们利用了这样一个事实:脂质双分子层膜以及完整线粒体中的低电导孔状态可由多聚阴离子诱导产生。在人工双分子层中重构后,当施加电压的极性在顺式侧为负时,处于此亚状态的孔会变为完全阳离子选择性的。孔的这种行为可以解释为什么在完整线粒体中诱导低电导孔状态会导致线粒体膜间激酶(如肌酸激酶和腺苷酸激酶)完全被抑制,但在利用外部ATP时,外周激酶(如己糖激酶)却不会被抑制。内膜电位可能在接触位点传导至外膜,这表明这些位点存在阳离子选择性孔。这一方面对于位于线粒体外膜后的外周激酶(如肌酸激酶、核苷二磷酸激酶和腺苷酸激酶)的调节可能很重要。