Gardiner N S, Whiteley C G
Biochem Biophys Res Commun. 1985 Mar 29;127(3):1057-65. doi: 10.1016/s0006-291x(85)80052-8.
Kinetic analysis showed that the alkaloid caffeine is a competitive inhibitor of the enzyme lactate dehydrogenase with respect to substrate pyruvate, and a non-competitive inhibitor with respect to the coenzyme NADH. The inhibitor constant Ki is 0,54 mM. Scatchard analysis determined the dissociation constant for a single independent binding site of the ternary lactate dehydrogenase - NADH - caffeine complex (KE-NADH-CAFFEINE) and the number of binding sites to be 0,14 mM and 3,83 respectively. Caffeine binds to a hydrophobic domain in the substrate binding site. Alternate nucleophilic - electrophilic functionalities within the inhibitor molecule are proposed to be the fundamental reason for the inhibition.
动力学分析表明,生物碱咖啡因是乳酸脱氢酶针对底物丙酮酸的竞争性抑制剂,也是针对辅酶NADH的非竞争性抑制剂。抑制剂常数Ki为0.54 mM。Scatchard分析确定了三元乳酸脱氢酶-NADH-咖啡因复合物(KE-NADH-CAFFEINE)单个独立结合位点的解离常数,分别为0.14 mM和3.83。咖啡因与底物结合位点中的疏水结构域结合。抑制剂分子内交替的亲核-亲电官能团被认为是抑制作用的根本原因。