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首页> 外文期刊>BioMed research international >Molecular Cloning and Biochemical Characterization of a Recombinant Sterol 3-O-Glucosyltransferase from Gymnema sylvestre R.Br. Catalyzing Biosynthesis of Steryl Glucosides
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Molecular Cloning and Biochemical Characterization of a Recombinant Sterol 3-O-Glucosyltransferase from Gymnema sylvestre R.Br. Catalyzing Biosynthesis of Steryl Glucosides

机译:来自Gymnema Sylvestre R.BR的重组甾醇3-O-葡糖糖基转移酶的分子克隆及生物化学表征 催化Steryl葡糖苷的生物合成

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Gymnema sylvestre R.Br., a pharmacologically important herb vernacularly called Gur-Mar (sugar eliminator), is widely known for its antidiabetic action. This property of the herb has been attributed to the presence of bioactive triterpene glycosides. Although some information regarding pharmacology and phytochemical profiles of the plant are available, no attempts have been made so far to decipher the biosynthetic pathway and key enzymes involved in biosynthesis of steryl glucosides. The present report deals with the identification and catalytic characterization of a glucosyltransferase, catalyzing biosynthesis of steryl glycosides. The full length cDNA (2572 bp) contained an open reading frame of 2106 nucleotides that encoded a 701 amino acid protein, falling into GT-B subfamily of glycosyltransferases. The GsSGT was expressed in Escherichia coli and biochemical characterization of the recombinant enzyme suggested its key role in the biosynthesis of steryl glucosides with catalytic preference for C-3 hydroxyl group of sterols. To our knowledge, this pertains to be the first report on cloning and biochemical characterization of a sterol metabolism gene from G. sylvestre R.Br. catalyzing glucosylation of a variety of sterols of biological origin from diverse organisms such as bacteria, fungi, and plants.
机译:Gymnema Sylvestre R.Br.,一种药理学上重要的草本植物,称为Gur-Mar(糖消除剂),广为人知,以其抗糖尿病作用众所周知。 HERB的这种性质归因于生物活性三萜糖苷的存在。尽管有关于该植物的药理和植物化学谱的一些信息,但迄今未尝试破译生物合成途径和参与辛酸葡糖苷的生物合成的关键酶。本报告涉及葡萄糖糖基转移酶的鉴定和催化表征,催化Steryl糖苷的生物合成。全长cDNA(2572bp)含有2106个核苷酸的开放阅读框架,其编码了701个氨基酸蛋白,落入糖基转移酶的GT-B亚家族。 GSSGT在大肠杆菌中表达,重组酶的生物化学表征表明其在甾醇的C-3羟基催化偏好中的生物合成中的主要作用。为了我们的知识,这是关于来自G.Sylvestre R.BR的甾醇代谢基因克隆和生化表征的第一个报告。催化各种生物来源的葡萄糖苷化从不同的生物,如细菌,真菌和植物。

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