Rauchová Hana, Drahota Zdenek, Rauch Pavel, Fato Romana, Lenaz Giorgio
Center for Experimental Cardiovascular Research, Czech Academy of Sciences, 142 20 Prague 4, Videnská 1083, Czech Republic.
Acta Biochim Pol. 2003;50(2):405-13.
Data presented in this paper show that the size of the endogenous coenzyme Q (CoQ) pool is not a limiting factor in the activation of mitochondrial glycerophosphate-dependent respiration by exogenous CoQ(3), since successive additions of succinate and NADH to brown adipose tissue mitochondria further increase the rate of oxygen uptake. Because the inhibition of glycerophosphate-dependent respiration by oleate was eliminated by added CoQ(3), our data indicate that the activating effect of CoQ(3) is related to the release of the inhibitory effect of endogenous free fatty acids (FFA). Both the inhibitory effect of FFA and the activating effect of CoQ(3) could be demonstrated only for glycerophosphate-dependent respiration, while succinate- or NADH-dependent respiration was not affected. The presented data suggest differences between mitochondrial glycerophosphate dehydrogenase and succinate or NADH dehydrogenases in the transfer of reducing equivalents to the CoQ pool.
本文所呈现的数据表明,内源性辅酶Q(CoQ)库的大小并非外源CoQ(3)激活线粒体甘油磷酸依赖性呼吸作用的限制因素,因为向棕色脂肪组织线粒体中连续添加琥珀酸和NADH会进一步提高氧气摄取速率。由于添加CoQ(3)消除了油酸对甘油磷酸依赖性呼吸作用的抑制,我们的数据表明CoQ(3)的激活作用与内源性游离脂肪酸(FFA)抑制作用的解除有关。FFA的抑制作用和CoQ(3)的激活作用仅在甘油磷酸依赖性呼吸作用中得到证实,而琥珀酸或NADH依赖性呼吸作用则不受影响。所呈现的数据表明,线粒体甘油磷酸脱氢酶与琥珀酸或NADH脱氢酶在将还原当量传递至CoQ库方面存在差异。