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人唾液过氧化物酶催化硫氰酸盐氧化的稳态动力学

Steady-state kinetics of thiocyanate oxidation catalyzed by human salivary peroxidase.

作者信息

Pruitt K M, Mansson-Rahemtulla B, Baldone D C, Rahemtulla F

机构信息

Department of Biochemistry, University of Alabama, Birmingham 35294.

出版信息

Biochemistry. 1988 Jan 12;27(1):240-5. doi: 10.1021/bi00401a036.

DOI:10.1021/bi00401a036
PMID:3349029
Abstract

A steady-state kinetic analysis was made of thiocyanate (SCN-) oxidation catalyzed by human peroxidase (SPO) isolated from parotid saliva. For comparative purposes, bovine lactoperoxidase (LPO) was also studied. Both enzymes followed the classical Theorell-Chance mechanism under the initial conditions [H2O2] less than 0.2mM, [SCN-] less than 10mM, and pH greater than 6.0. The pH-independent rate constants (k1) for the formation of compound I were estimated to be 8 X 10(6) M-1 s-1 (SD = 1, n = 18) for LPO and 5 X 10(6) M-1 s-1 (SD = 1, n = 11) for SPO. The pH-independent second-order rate constants (k4) for the oxidation of thiocyanate by compound I were estimated to be 5 X 10(6) M-1 s-1 (SD = 1, n = 18) for LPO and 9 X 10(6) M-1 s-1 (SD = 2, n = 11) for SPO. Both enzymes were inhibited by SCN- at pH less than 6. The pH-independent equilibrium constant (Ki) for the formation of the inhibited enzyme-SCN- complex was estimated to be 24 M-1 (SD = 12, n = 8) for LPO and 44 M-1 (SD = 4, n = 10) for SPO. An apparent pH dependence of the estimated values for k4 and Ki for both LPO and SPO was consistent with a mechanism based on assumptions that protonation of compound I was necessary for the SCN- peroxidation step, that a second protonation of compound I gave an inactive form, and that the inhibited enzyme-SCN- complex could be further protonated to give another inactive form.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对从腮腺唾液中分离出的人过氧化物酶(SPO)催化硫氰酸盐(SCN-)氧化反应进行了稳态动力学分析。为作比较,还研究了牛乳铁蛋白(LPO)。在初始条件[H2O2]小于0.2mM、[SCN-]小于10mM及pH大于6.0时,两种酶均遵循经典的Theorell-Chance机制。LPO形成化合物I的与pH无关的速率常数(k1)估计为8×10(6) M-1 s-1(标准差=1,n=18),SPO为5×10(6) M-1 s-1(标准差=1,n=11)。化合物I氧化硫氰酸盐的与pH无关的二级速率常数(k4),LPO估计为5×10(6) M-1 s-1(标准差=1,n=18),SPO为9×10(6) M-1 s-1(标准差=2,n=11)。在pH小于6时,两种酶均受SCN-抑制。LPO形成酶-SCN-抑制复合物的与pH无关的平衡常数(Ki)估计为24 M-1(标准差=12,n=8),SPO为44 M-1(标准差=4,n=10)。LPO和SPO的k4和Ki估计值明显的pH依赖性,与基于以下假设的机制一致:化合物I的质子化对于SCN-过氧化步骤是必需的;化合物I的第二次质子化产生无活性形式;酶-SCN-抑制复合物可进一步质子化产生另一种无活性形式。(摘要截短于250词)

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