Ferreira F M, Palmeira C M, Seiça R, Santos M S
Department of Zoology and the Faculty of Medicine, Center for Neurosciences of Coimbra, University of Coimbra, Portugal.
Metabolism. 1999 Sep;48(9):1115-9. doi: 10.1016/s0026-0495(99)90124-5.
Respiratory indexes and the transmembrane electrical potential (delta psi) were evaluated in mitochondrial preparations from 6-month-old Goto-Kakizaki (GK) and Wistar rats in the presence of glutamate + malate and succinate. We found that in diabetic GK mitochondria, flavin adenine dinucleotide (FAD)-linked respiratory indexes (respiratory control ratio [RCR] and adenosine diphosphate [ADP] to oxygen ratio [ADP/O]) are increased and uncoupled respiration is largely enhanced, indicating increased respiratory chain activity in GK rats. Delta psi development in GK mitochondrial preparations, energized using glutamate + malate or succinate as substrates, and the repolarization rate upon phosphorylation of the added ADP were significantly higher in GK mitochondrial preparations. These results indicate an enhanced activity of the phosphorylation system, confirmed by evaluating delta psi development when the mitochondria are energized by adenosine triphosphate (ATP). Moreover, recovery of the potential upon a phosphorylative cycle is increased in GK mitochondria, reflecting a more efficient coupling between the phosphorylative and oxidative system. Contrasting with results obtained for alloxan- or streptozotocin-induced diabetic rats, this study clearly demonstrates no impairment of mitochondrial bioenergetics in diabetic GK rats. On the contrary, at this age, we observed a higher efficiency of the phosphorylation system as compared with Wistar rats.
在谷氨酸+苹果酸和琥珀酸存在的情况下,对6月龄的Goto-Kakizaki(GK)大鼠和Wistar大鼠的线粒体提取物中的呼吸指标和跨膜电位(δψ)进行了评估。我们发现,在糖尿病GK大鼠的线粒体中,黄素腺嘌呤二核苷酸(FAD)相关的呼吸指标(呼吸控制率[RCR]和二磷酸腺苷[ADP]与氧的比率[ADP/O])增加,解偶联呼吸显著增强,表明GK大鼠的呼吸链活性增加。在以谷氨酸+苹果酸或琥珀酸作为底物供能的GK线粒体提取物中,δψ的产生以及添加ADP磷酸化后的复极化速率在GK线粒体提取物中显著更高。这些结果表明磷酸化系统的活性增强,这在通过三磷酸腺苷(ATP)供能时评估δψ的产生得到了证实。此外,GK线粒体中磷酸化循环后电位的恢复增加,反映了磷酸化和氧化系统之间更有效的偶联。与用四氧嘧啶或链脲佐菌素诱导的糖尿病大鼠所获得的结果相反,本研究清楚地表明糖尿病GK大鼠的线粒体生物能量学没有受损。相反,在这个年龄段,我们观察到与Wistar大鼠相比,磷酸化系统的效率更高。