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首页> 外文期刊>Biotechnology Letters >Regioselective glucosidation of trans-resveratrol in Escherichia coli expressing glucosyltransferase from Phytolacca americana.
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Regioselective glucosidation of trans-resveratrol in Escherichia coli expressing glucosyltransferase from Phytolacca americana.

机译:表达大肠杆菌的葡糖基转移酶的大肠杆菌中反式-白藜芦醇的区域选择性糖基化。

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摘要

A glucosyltransferase (GT) of Phytolacca americana (PaGT3) was expressed in Escherichia coli and purified for the synthesis of two O- beta -glucoside products of trans-resveratrol. The reaction was moderately regioselective with a ratio of 4'-O- beta -glucoside: 3-O- beta -glucoside at 10:3. We used not only the purified enzyme but also the E. coli cells containing the PaGT3 gene for the synthesis of glycoconjugates. E. coli cell cultures also have other advantages, such as a shorter incubation time compared with cultured plant cells, no need for the addition of exogenous glucosyl donor compounds such as UDP-glucose, and almost complete conversion of the aglycone to the glucoside products. Furthermore, a homology model of PaGT3 and mutagenesis studies suggested that His-20 would be a catalytically important residue.
机译:在美洲大肠埃希氏菌中表达美洲美洲锥lac的葡萄糖基转移酶(GT)( Pa GT3),并纯化以合成两个 O < / i>-反式白藜芦醇的β-葡萄糖苷产物。该反应是中等区域选择性的,比率为4'-O-β-葡萄糖苷:3- O-β-葡萄糖苷为10:3。我们不仅使用了纯化的酶,而且还使用了 E。含有 Pa GT3基因的大肠埃希菌细胞,用于合成糖结合物。 E。大肠杆菌细胞培养物还具有其他优点,例如与培养的植物细胞相比,孵育时间更短,不需要添加外源糖基供体化合物(例如UDP-葡萄糖),糖苷配基几乎完全转化为糖苷产品。此外,PaGT3的同源性模型和诱变研究表明,His-20将是重要的催化残基。

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