Ehrlich R S, Colman R F
J Biol Chem. 1982 May 10;257(9):4769-74.
Binding of NADH and NADPH to NAD-linked isocitrate dehydrogenase from pig heart (which contains three types of subunits of similar molecular weight in the ratio 2:1:1) was studied by use of the enhancement of nucleotide fluorescence. NADH and NADPH bind independently and, for both reduced nucleotides, 0.5 binding sites/average subunit or two binding sites for every four subunits were detected. Binding of NADH is unaffected by metal ion, isocitrate, or NAD+. ADP is also not competitive with NADH binding but reduces the strength of binding 3-fold. In contrast, ATP (KI = 9 microM ATP4-) appears to be competitive with NADH. Evidence for an NADH site with higher dissociation constant (KD greater than 200 microM) than that obtained from the fluorescence measurements (KD = 2.8 microM at pH 6.1) is indicated by competition of NADH with [14C]NAD+ binding. NADPH binding is enhanced by the presence of manganese. The metal dependence is consistent with NADPH (KD = 8.1 microM at pH 6) binding to the same site as Mn-NADPH2- (KD = 0.9 microM). Dissociation constants for both species increase with increasing pH in the range 6-8. NADPH binding is competitively inhibited by ADP, ATP, ADP-ribose, and isocitrate. This inhibition of NADPH binding is probably indirect since measurements of [14C]ADP in the presence and absence of NADPH showed little inhibition of binding by NADPH concentrations sufficient to saturate the fluorescent site. These studies extent the number of ligands for isocitrate dehydrogenase for which there are fewer binding sites than there are subunits.
利用核苷酸荧光增强法研究了猪心NAD - 连接的异柠檬酸脱氢酶(其含有三种分子量相似的亚基,比例为2:1:1)与NADH和NADPH的结合情况。NADH和NADPH独立结合,对于这两种还原型核苷酸,检测到每个亚基有0.5个结合位点,即每四个亚基有两个结合位点。NADH的结合不受金属离子、异柠檬酸或NAD⁺的影响。ADP也不与NADH结合竞争,但会使结合强度降低3倍。相比之下,ATP(KI = 9 μM ATP⁴⁻)似乎与NADH竞争。NADH与[¹⁴C]NAD⁺结合的竞争表明存在一个解离常数(KD大于200 μM)比荧光测量得到的解离常数(pH 6.1时KD = 2.8 μM)更高的NADH位点。锰的存在会增强NADPH的结合。这种对金属的依赖性与NADPH(pH 6时KD = 8.1 μM)与Mn - NADPH²⁻(KD = 0.9 μM)结合到同一位点一致。两种物质的解离常数在pH 6 - 8范围内随pH升高而增加。NADPH的结合受到ADP、ATP、ADP - 核糖和异柠檬酸的竞争性抑制。这种对NADPH结合的抑制可能是间接的,因为在有和没有NADPH存在的情况下对[¹⁴C]ADP的测量表明,足以饱和荧光位点的NADPH浓度对结合几乎没有抑制作用。这些研究扩展了异柠檬酸脱氢酶配体的数量,这些配体的结合位点比亚基数量少。