Zakharova N V
Department of Biochemistry, School of Biology, Lomonosov Moscow State University, Moscow, 119992, Russia.
Biochemistry (Mosc). 2002 Jun;67(6):651-61. doi: 10.1023/a:1016194120930.
The kinetics of the NADH-->3;-acetylpyridine adenine dinucleotide (APAD+) transhydrogenase reaction (DD-reaction) catalyzed by different preparations of mitochondrial NADH-dehydrogenase (submitochondrial particles (SMP), purified Complex I, and three-subunit fragment of Complex I (FP)) have been studied. Complex I (in SMP or in purified preparation) catalyzes two NADH-->APAD+ reactions with different rates and nucleotide affinities. Reaction 1 has high affinity to APAD+ (Km = 7 microM, for SMP) and low rate (Vm = 0.2 micromol/min per mg protein, for SMP) and occurs with formation of a ternary complex. Reaction 2 has much higher rate and considerably lower affinity for oxidized nucleotide (Vm = 1.7 micromol/min per mg protein and Km = 160 microM, for SMP). FP catalyzes only reaction 1. ADP-ribose inhibits reaction 1 with mixed type inhibition (competitive with non-competitive) with respect to NADH and APAD+. Rhein competes with both substrates. The results suggest that at least two nucleotide-binding sites exist in Complex I.
对由不同制剂的线粒体NADH脱氢酶(亚线粒体颗粒(SMP)、纯化的复合体I和复合体I的三亚基片段(FP))催化的NADH→3-乙酰吡啶腺嘌呤二核苷酸(APAD+)转氢酶反应(DD反应)的动力学进行了研究。复合体I(在SMP中或纯化制剂中)催化两个NADH→APAD+反应,反应速率和核苷酸亲和力不同。反应1对APAD+具有高亲和力(对于SMP,Km = 7 microM)且速率低(对于SMP,Vm = 0.2微摩尔/分钟/毫克蛋白),并伴随着三元复合物的形成。反应2具有更高的速率且对氧化型核苷酸的亲和力相当低(对于SMP,Vm = 1.7微摩尔/分钟/毫克蛋白且Km = 160 microM)。FP仅催化反应1。ADP-核糖以对NADH和APAD+的混合型抑制(竞争性与非竞争性)抑制反应1。大黄酸与两种底物竞争。结果表明复合体I中至少存在两个核苷酸结合位点。