Driscoll J J, Kosman D J
Department of Biochemistry, State University of New York, Buffalo 14214.
Biochemistry. 1987 Jun 16;26(12):3429-36. doi: 10.1021/bi00386a027.
Solvent and solvent proton dependent steps involved in the mechanism of the enzyme galactose oxidase have been examined. The deuterium kinetic solvent isotope effect (KSIE) on the velocity of the galactose oxidase catalyzed oxidation of methyl beta-galactopyranoside by O2 was measured. Examination of the thermodynamic activation parameters for the reaction indicated that the isotope effect was attributable to a slightly less favorable delta H value, consistent with a KSIE on proton transfer. A detailed kinetic analysis was performed, examining the effect of D2O on the rate of reaction over the pH range 4.8-8.0. Both pL-rate profiles exhibited bell-shaped curves. Substitution of D2O as solvent shifted the pKes values for the enzymic central complex: pKes1 from 6.30 to 6.80 and pKes2 from 7.16 to 7.35. Analysis of the observed shifts in dissociation constants was performed with regard to potential hydrogenic sites. pKes1 can be attributed to a histidine imidazole, while pKes2 is tentatively assigned to a Cu2+-bound water molecule. A proton inventory was performed (KSIE = +1.55); the plot of kcat vs. mole fraction D2O was linear, indicating the existence of a single solvent-derived proton involved in a galactose oxidase rate-determining step (or steps). The pH dependence of CN- inhibition was also examined. The Ki-pH profile indicated that a group ionization, with pKa = 7.17, modulated CN- inhibition; Ki was at a minimum when this group was in the protonated state. The inhibition profile followed the alkaline limit of the pH-rate profile for the enzymic reaction, suggesting that the group displaced by CN- was also deprotonating above pH 7.(ABSTRACT TRUNCATED AT 250 WORDS)
已对参与半乳糖氧化酶作用机制的溶剂及溶剂质子相关步骤进行了研究。测定了氘动力学溶剂同位素效应(KSIE)对氧气催化半乳糖氧化酶氧化β - 甲基吡喃半乳糖苷反应速度的影响。对该反应的热力学活化参数进行研究表明,同位素效应归因于稍不利的ΔH值,这与质子转移过程中的KSIE一致。进行了详细的动力学分析,研究了重水在pH值4.8 - 8.0范围内对反应速率的影响。两种pL - 速率曲线均呈现钟形。用重水替代溶剂会使酶中心复合物的pKes值发生变化:pKes1从6.30变为6.80,pKes2从7.16变为7.35。针对潜在的氢位点对解离常数的观测变化进行了分析。pKes1可归因于组氨酸咪唑,而pKes2暂定为与铜离子结合的水分子。进行了质子总量分析(KSIE = +1.55);kcat与重水摩尔分数的关系图呈线性,表明在半乳糖氧化酶的速率决定步骤中存在单个源自溶剂的质子。还研究了pH对氰化物抑制作用的影响。Ki - pH曲线表明,pKa = 7.17的基团电离调节了氰化物抑制作用;当该基团处于质子化状态时,Ki最小。抑制曲线遵循酶促反应pH - 速率曲线的碱性极限,表明被氰化物取代的基团在pH高于7时也会发生去质子化。(摘要截取自250字)