De Weck Z, Pande J, Kägi J H
Biochemisches Institut, Universität Zürich, Switzerland.
Biochemistry. 1987 Jul 28;26(15):4769-76. doi: 10.1021/bi00389a026.
Binding of NAD coenzymes to yeast alcohol dehydrogenase (YADH) and porcine heart lactate dehydrogenase (PHLDH) was studied by hydrogen-deuterium exchange with the infrared technique. Conformational changes in the enzymes specific to the coenzymes and their fragments were observed, and the pH dependence of the exchange reaction shows that it conforms to the EX-2 scheme. In both YADH and PHLDH the magnitude of the conformational change of measured by exchange retardation is considerably larger for NAD+ than for NADH. Studies with coenzyme fragments like ADP-ribose, ADP, and AMP also highlight the lack of rigorous correlation between structural features such as charge and size and their influence on exchange behavior. Ternary complexes such as YADH-NAD+-pyrazole, PHLDH-NAD+-oxalate, and PHLDH-NADH-oxamate, which mimic the transition state, have a significantly more pronounced effect on exchange rates than the corresponding binary complexes. The outstanding feature of this study is the demonstration that in the binary enzyme-coenzyme complexes the more loosely bound NAD+ is more effective in retarding exchange than the more firmly bound NADH. These differences are attributed to the unequal structural constraints exerted by the two coenzymes upon the enzymes, which translate to unequal expenditure of transconformational work in the formation of the two complexes. The opposing variation in the free energy of binding and the transconformational work expended can be viewed as an unequal partitioning of the net free energy gain resulting from the protein-ligand interaction into a binding term and that required for conformational change.
采用红外技术通过氢氘交换研究了NAD辅酶与酵母乙醇脱氢酶(YADH)和猪心乳酸脱氢酶(PHLDH)的结合。观察到了辅酶及其片段特异性的酶构象变化,并且交换反应的pH依赖性表明其符合EX-2机制。在YADH和PHLDH中,通过交换延迟测量的构象变化幅度,NAD⁺比NADH大得多。对辅酶片段如ADP-核糖、ADP和AMP的研究也突出了电荷和大小等结构特征与其对交换行为的影响之间缺乏严格的相关性。模拟过渡态的三元复合物如YADH-NAD⁺-吡唑、PHLDH-NAD⁺-草酸盐和PHLDH-NADH-草氨酸盐对交换速率的影响比相应的二元复合物明显更显著。这项研究的突出特点是证明了在二元酶-辅酶复合物中,结合较松散的NAD⁺在延迟交换方面比结合较紧密的NADH更有效。这些差异归因于两种辅酶对酶施加的不等结构限制,这转化为形成两种复合物时转构象功的不等消耗。结合自由能和消耗的转构象功的相反变化可以看作是蛋白质-配体相互作用产生的净自由能增益在结合项和构象变化所需项之间的不等分配。