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豚鼠肝脏微粒体中参与N-羟基乙酰苯胺O-葡萄糖苷脱乙酰化的脱乙酰酶的纯化与特性研究

Purification and characterization of guinea-pig liver microsomal deacetylase involved in the deacetylation of the O-glucoside of N-hydroxyacetanilide.

作者信息

Suzuki-Kurasaki M, Yoshioka T, Uematsu T

机构信息

Department of Chemical Hygiene, Hokkaido Institute of Pharmaceutical Sciences, Otaru, 047-02, Japan.

出版信息

Biochem J. 1997 Jul 1;325 ( Pt 1)(Pt 1):155-61. doi: 10.1042/bj3250155.

Abstract

A microsomal deacetylase that catalyses the deacetylation of the O-glucoside of N-hydroxyacetanilide (GHA) was purified from guinea-pig liver. The activity was located exclusively in the microsomes and not detected in the cytosol. The purified GHA deacetylase was a trimeric protein with a molecular mass of 160+/-10 (S.D.) kDa composed of subunits of 53+/-2 kDa; its pI was 4.7. The N-terminal amino acid sequence of GHA deacetylase was similar to those reported for guinea-pig and rat liver microsomal carboxylesterases. The GHA deacetylase showed a comparable hydrolytic activity towards p-nitrophenyl acetate (PNPA), although the activities towards N-hydroxyacetanilide, acetanilide and some endogenous acylated compounds were very low or not detectable. The deacetylase activity towards GHA was inhibited by organophosphates but not by p-chloromercuribenzoate, suggesting that GHA deacetylase can be classified as a B-esterase. The enzyme exhibited a positive homotropic co-operativity towards GHA. The values of the Hill coefficient, the half-saturating concentration ([S]0.5) for GHA, and Vmax were 1.59+/-0.03, 5.51+/-0.07 mM and 32.5+/-1.4 micromol/min per mg respectively, at the optimum pH of 8.5. The bell-shaped pH dependence of the Vmax/[S]0.5 profile indicated pKa values attributed to histidine and lysine residues. The study of stoichiometric inhibition by di-isopropyl fluorophosphate and kinetic analysis with the Monod-Wyman-Changeux model suggests that GHA deacetylase has six substrate binding sites and three catalytically essential serine residues per enzyme molecule.

摘要

从豚鼠肝脏中纯化出一种微粒体脱乙酰酶,该酶可催化N - 羟基乙酰苯胺(GHA)的O - 葡萄糖苷脱乙酰化。该活性仅存在于微粒体中,在胞质溶胶中未检测到。纯化后的GHA脱乙酰酶是一种三聚体蛋白,分子量为160±10(标准差)kDa,由53±2 kDa的亚基组成;其pI为4.7。GHA脱乙酰酶的N端氨基酸序列与豚鼠和大鼠肝脏微粒体羧酸酯酶报道的序列相似。GHA脱乙酰酶对乙酸对硝基苯酯(PNPA)表现出相当的水解活性,尽管对N - 羟基乙酰苯胺、乙酰苯胺和一些内源性酰化化合物的活性非常低或无法检测到。对GHA的脱乙酰酶活性受有机磷酸酯抑制,但不受对氯汞苯甲酸抑制,这表明GHA脱乙酰酶可归类为B型酯酶。该酶对GHA表现出正协同性。在最佳pH 8.5时,希尔系数、GHA的半饱和浓度([S]0.5)和Vmax值分别为1.59±0.03、5.51±0.07 mM和32.5±1.4 μmol/min per mg。Vmax/[S]0.5曲线呈钟形pH依赖性,表明组氨酸和赖氨酸残基的pKa值。二异丙基氟磷酸的化学计量抑制研究以及用Monod - Wyman - Changeux模型进行的动力学分析表明,GHA脱乙酰酶每个酶分子有六个底物结合位点和三个催化必需的丝氨酸残基。

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