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植物异生素生物化学:DDT代谢的大豆O-葡萄糖基转移酶的分离与特性分析

Plant biochemistry of xenobiotics: isolation and characterization of a soybean O-glucosyltransferase of DDT metabolism.

作者信息

Wetzel A, Sandermann H

机构信息

GSF-Forschungszentrum für Umwelt und Gesundheit GmbH, Institut für Biochemische Pflanzenpathologie, Oberschleissheim, FRG.

出版信息

Arch Biochem Biophys. 1994 Nov 1;314(2):323-8. doi: 10.1006/abbi.1994.1449.

Abstract

The insecticide DDT is metabolized in soybean and wheat cell cultures to the acylglucoside of 2,2-bis-(4-chlorophenyl)-acetic acid (DDA) (M. Arjmand and H. Sandermann, 1985, Pesticide Biochem. Physiol. 23, 389-397). An enzyme catalyzing the conjugation reaction has been highly purified from the soluble enzyme fraction of cultured soybean cells. After the initial ammonium sulfate fractionation, quercetin and pentachlorophenol were preferentially glucosylated. In the course of 367-fold purification, DDA became the preferred substrate. The purified enzyme was unstable. A molecular weight of approximately 50 kDa was estimated for the native enzyme (gel permeation chromatography) as well as the denatured protein (sodium dodecyl sulfate-gel electrophoresis). The isoelectric point for the enzyme was near pH 4.9. Apparent Km values of about 170 microM were determined for UDP-glucose as well as DDA. The maximal velocity was 257 microkat/kg protein, corresponding to a conjugation capacity of 855 micrograms DDA/h/g fresh weight of cells.

摘要

杀虫剂滴滴涕(DDT)在大豆和小麦细胞培养物中代谢为2,2-双-(4-氯苯基)-乙酸(DDA)的酰基葡萄糖苷(M. 阿尔贾蒙德和H. 桑德曼,1985年,《农药生物化学与生理学》23卷,第389 - 397页)。一种催化共轭反应的酶已从培养的大豆细胞的可溶性酶组分中高度纯化出来。在最初的硫酸铵分级分离后,槲皮素和五氯苯酚优先被糖基化。在367倍纯化过程中,DDA成为了首选底物。纯化后的酶不稳定。通过凝胶渗透色谱法对天然酶以及变性蛋白(十二烷基硫酸钠 - 凝胶电泳)估计其分子量约为50 kDa。该酶的等电点接近pH 4.9。确定UDP - 葡萄糖以及DDA的表观Km值约为170微摩尔。最大速度为257微卡特/千克蛋白质,相当于细胞鲜重每小时855微克DDA的共轭能力。

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