首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Crown-ether-mediated crystal structures of the glycosyltransferase PaGT3 from Phytolacca americana
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Crown-ether-mediated crystal structures of the glycosyltransferase PaGT3 from Phytolacca americana

机译:Crown-ether-mediated的晶体结构glycosyltransferase PaGT3 from Phytolacca美国

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Uridine diphosphate glycosyltransferases (UGTs) are ubiquitous enzymes that are involved in the glycosylation of small molecules. As glycosylation improves the water solubility and stability of hydrophobic compounds, interest in the use of UGTs for the synthesis of glycosides of poorly soluble compounds is increasing. While sugar-donor recognition in UGTs is conserved with the presence of a plant secondary product glycosyltransferase (PSPG) motif, the basis of the recognition of the sugar acceptor and the regioselectivity of the products is poorly understood owing to low sequence identity around the acceptor-binding region. PaGT3, a glycosyltransferase from the plant Phytolacca americana, can glycosylate a range of acceptors. To illustrate the structure-function relationship of PaGT3, its crystal structure was determined. The sugar-donor and sugar-acceptor binding pockets in PaGT3 were recognized by comparison of its structure with those of other UGTs. The key feature of PaGT3 was the presence of longer loop regions around the hydrophobic acceptor-binding pocket, which resulted in a flexible and wider acceptor binding pocket. In this study, PaGT3 crystals were grown by co-crystallization with 18-crown-6 ether or 15-crown-5 ether. The crown-ether molecule in the asymmetric unit was observed to form a complex with a metal ion, which was coordinated on two sides by the main-chain O atoms of Glu238 from two molecules of the protein. The crown ether-metal complex resembles a molecular glue that sticks two molecules of PaGT3 together to enhance crystal growth. Thus, this result provides an insight into the substrate-recognition strategy in PaGT3 for the study of glycosyltransferases. Additionally, it is shown that crown ether-metal ion complexes can be used as a molecular glue for the crystallization of proteins.
机译:尿苷二磷酸糖基转移酶(ugt)无处不在的酶参与了吗小分子的糖基化。糖基化提高了水溶性疏水性化合物的稳定,兴趣的使用与ugt苷的合成不溶性化合物正在增加。sugar-donor识别在ugt是守恒的植物的存在二次产品糖基转移酶(PSPG)主题的基础糖受体和识别产品的区域选择性差理解由于低序列的身份acceptor-binding地区。糖基转移酶的种植商美国,可以glycosylate一系列受体。说明结构的关系PaGT3,其晶体结构决定。sugar-donor和sugar-acceptor绑定口袋里PaGT3被比较认可其结构与其他ugt。功能PaGT3再循环的存在疏水acceptor-binding周围地区口袋,导致一个灵活和广泛受体结合的口袋里。晶体被co-crystallization与成长18-crown-6醚或15-crown-5醚。冠醚分子在不对称单位观察到形成一个复杂的金属离子,这是双方的协调从两个分子主链原子阿Glu238的蛋白质。类似于分子粘接两个分子PaGT3一起提高晶体增长。PaGT3 substrate-recognition策略糖基转移酶的研究。此外,它表明ether-metal冠冕离子配合物可以用作分子胶蛋白质的结晶。

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