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植物异生素生物化学:大豆中针对氯酚和苯胺的O-和N-葡糖基转移酶以及O-和N-丙二酰转移酶的分离与特性

Plant biochemistry of xenobiotics: isolation and properties of soybean O- and N-glucosyl and O- and N-malonyltransferases for chlorinated phenols and anilines.

作者信息

Sandermann H, Schmitt R, Eckey H, Bauknecht T

机构信息

GSF-Institut für Biochemische Pflanzenpathologie, Neuherberg, Germany.

出版信息

Arch Biochem Biophys. 1991 Jun;287(2):341-50. doi: 10.1016/0003-9861(91)90488-5.

Abstract

O-Glucosyltransferase (O-GT), O-malonyltransferase (O-MAT), N-glucosyltransferase (N-GT), and N-malonyltransferase (N-MAT) activities have been detected in cultured soybean cells, using pentachlorophenol and 3,4-dichloroaniline as xenobiotic standard substrates. The O-GT was purified approximately 1000-fold, and the N-MAT approximately 70-fold. There was an extensive copurification of O-GT and O-MAT. The following functional molecular weight values were obtained, 47 kDA (O-GT), 48 kDA (O-MAT) 43 kDa (N-GT), and 48 kDa (N-MAT). O-GT and N-MAT appeared to be monomeric polypeptides with isoelectric points of approximately 4.8 and approximately 6.1, respectively. The O-GT, N-GT, and N-MAT activities had marked substrate specificities for chlorinated aromatic xenobiotics and thus illustrate the existence of plant isoenzymes with specificity for xenobiotics.

摘要

利用五氯苯酚和3,4-二氯苯胺作为异生物质标准底物,在培养的大豆细胞中检测到了O-葡萄糖基转移酶(O-GT)、O-丙二酰基转移酶(O-MAT)、N-葡萄糖基转移酶(N-GT)和N-丙二酰基转移酶(N-MAT)的活性。O-GT被纯化了约1000倍,N-MAT被纯化了约70倍。O-GT和O-MAT存在广泛的共纯化现象。获得了以下功能分子量值:47 kDa(O-GT)、48 kDa(O-MAT)、43 kDa(N-GT)和48 kDa(N-MAT)。O-GT和N-MAT似乎是单体多肽,其等电点分别约为4.8和约6.1。O-GT、N-GT和N-MAT活性对氯化芳香族异生物质具有明显的底物特异性,因此说明了存在对异生物质具有特异性的植物同工酶。

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