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首页> 外文期刊>Carbohydrate research >Expanded acceptor substrates flexibility study of flavonol 7-O-rhamnosyltransferase, AtUGT89C1 from Arabidopsis thaliana
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Expanded acceptor substrates flexibility study of flavonol 7-O-rhamnosyltransferase, AtUGT89C1 from Arabidopsis thaliana

机译:扩增的受体底物素灵活性研究黄酮醇7-O-rhamnosyl转移酶,Aravt89c1来自Arabidopsis Thaliana

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摘要

Acceptor substrates flexibility of previously characterized flavonol 7-O-rhamnosyltransferase (AtUGT89C1) from Arabidopsis thaliana was explored with an endogenous nucleotide diphosphate sugar and five different classes of flavonoids (flavonols, flavones, flavanones, chalcone and stilbenes) through a biotransformation approach. In contrast to the previous reports, this study highlights the expanded acceptor substrate promiscuity of AtUGT89C1 for the regiospecific glycosylation of diverse class of flavonoids at 7-hydroxyl position using microbial thymidine diphosphate (TDP)-L-rhamnose as sugar donor instead of uridine diphosphate-L-rhamnose. We examine the biocatalytic potential of AtUGT89C1 using endogenous sugar (TDP-L-rhamnose) from E. coli to generate a library of flavonoid 7-O-rhamnosides. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过生物转化方法,通过生物转化方法探讨来自拟南芥的FlaVonol 7-O-Rhamnosyl转移酶(Atugt89C1)的拟南芥7-O-rhamnosyl转移酶(Atugt89c1)的柔韧性。 与先前的报道相比,该研究突出了使用微生物胸苷二磷酸(TDP)-L-rhamnose作为糖供体而不是尿苷二磷酸酯(TDP)在7-羟基位置在7-羟基角度在7-羟基位置进行奥格特89C1的扩增受体底物滥交。 l-rhamnose。 我们使用来自大肠杆菌的内源糖(TDP-L-rhamnose)来研究Atugt89c1的生物催化潜力,从大肠杆菌产生一种类黄酮7-O- rhamnosides。 (c)2015 Elsevier Ltd.保留所有权利。

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