Hayashi Y, Yamazaki I
J Biol Chem. 1979 Sep 25;254(18):9101-6.
The reversibility of the stepwise reduction of Compound I to the ferric state via Compound II was confirmed in horseradish peroxidases A2 and C. The values of E'o (compound I/Compound II) and E'O (Compound II/ferric) were measured from equilibrium data coupled with the K2IrCl6-K3IrCl6 system in a narrow region of pH near 6.3. The ferric enzymes were also oxidized by ferricyanide to Compound II at alkaline pH and the values of E'O (Compound II/ferric) were measured from the equilibrium data. The pH dependence of E'O (Compound II/ferric) was in accord with the equation: E'O = EO + 0.058 log (Kr[H+] + [H+]2)/(KO + [H+]), where Kr and KO are proton dissociation constants in the ferric enzyme and Compound II, respectively. The pH-E'O (Compound I/Compound II) curves were likewise obtained from the equation, E'O = EO + 0.058 log (Kr + [H+]), where Kr is the proton dissociation constant in Compound II. The forward and backward rate constants were measured in each of one-electron transfer reactions of the peroxidases with the K2IrCl6-K3IrCl6 system at various pH values. The E'O values calculated on the assumption that the ratio of the rate constants equals the equilibrium constant were compared with those obtained from the equilibrium data.
在辣根过氧化物酶A2和C中证实了化合物I通过化合物II逐步还原为铁状态的可逆性。在接近6.3的狭窄pH范围内,结合K2IrCl6-K3IrCl6体系的平衡数据测量了E'o(化合物I/化合物II)和E'O(化合物II/铁)的值。在碱性pH下,铁氰化物也将铁酶氧化为化合物II,并根据平衡数据测量了E'O(化合物II/铁)的值。E'O(化合物II/铁)的pH依赖性符合以下方程:E'O = EO + 0.058 log (Kr[H+] + [H+]2)/(KO + [H+]),其中Kr和KO分别是铁酶和化合物II中的质子解离常数。同样根据方程E'O = EO + 0.058 log (Kr + [H+])获得pH-E'O(化合物I/化合物II)曲线,其中Kr是化合物II中的质子解离常数。在不同pH值下,用K2IrCl6-K3IrCl6体系测量了过氧化物酶单电子转移反应中正向和反向速率常数。将基于速率常数之比等于平衡常数的假设计算得到的E'O值与从平衡数据中获得的值进行了比较。