Shore J D, Santiago D
J Biol Chem. 1975 Mar 25;250(6):2008-12.
The kinetic and spectral properties of native and totally cobalt-substituted liver alcohol dehydrogenase have been compared. Based on titrimetric determinations of enzyme active site concentration, the turnover number at pH 7.0 for cobalt enzyme was the same as for native enzyme. At pH 10, however, the turnover number was slower for cobalt-substituted enzyme, 3.14 s-1 as compared with 4.05 s-1 for native enzyme. A comparison between native and totally cobalt-substituted enzyme showed a blue-shifted enzyme-NADH double difference spectrum and a splitting and red-shifted enzyme-NAD+-pyrazole double difference spectrum in the near-ultraviolet. The 655-nm peak of the cobalt-substituted enzyme was perturbed by the formation of enzyme-NADH binary complex, enzyme-NAD+-trifloroethanol ternary complex, and enzyme-NAD+ binary complex formation. At pH 7.0, the only observable step in the reaction sequence with a significantly different rate constant for cobalt enzyme was the catalytic hydrogen-transferring step. The rate constant for this step is 92 s-1 for totally cobalt-substituted enzyme as compared with 138 s-1 for native liver alcohol dehydrogenase. The results of this study indicate that zinc is involved in catalysis alcohol and NADH.
已对天然型和完全钴取代型肝脏乙醇脱氢酶的动力学和光谱特性进行了比较。基于酶活性位点浓度的滴定测定,钴酶在pH 7.0时的周转数与天然酶相同。然而,在pH 10时,钴取代酶的周转数较慢,为3.14 s-1,而天然酶为4.05 s-1。天然酶与完全钴取代酶之间的比较显示,在近紫外区域,酶-NADH双差光谱发生蓝移,酶-NAD+-吡唑双差光谱出现分裂并发生红移。钴取代酶的655 nm峰因酶-NADH二元复合物、酶-NAD+-三氟乙醇三元复合物和酶-NAD+二元复合物的形成而受到扰动。在pH 7.0时,钴酶反应序列中唯一具有显著不同速率常数的可观察步骤是催化氢转移步骤。完全钴取代酶此步骤的速率常数为92 s-1,而天然肝脏乙醇脱氢酶为138 s-1。本研究结果表明,锌参与了乙醇和NADH的催化过程。