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High-resolution crystal structures and STD NMR mapping of human ABO(H) blood group glycosyltransferases in complex with trisaccharide reaction products suggest a molecular basis for product release

机译:人ABO(H)血基糖基转移酶的高分辨率晶体结构和STD NMR映射与三糖反应产物复合物中的复合物表明产品释放的分子基础

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The human ABO(H) blood group A- and B-synthesizing glycosyltransferases GTA and GTB have been structurally characterized to high resolution in complex with their respective trisaccharide antigen products. These findings are particularly timely and relevant given the dearth of glycosyltransferase structures collected in complex with their saccharide reaction products. GTA and GTB utilize the same acceptor substrates, oligosaccharides terminating with alpha-l-Fucp-(1 -> 2)-beta-d-Galp-OR (where R is a glycolipid or glycoprotein), but use distinct UDP donor sugars, UDP-N-acetylgalactosamine and UDP-galactose, to generate the blood group A (alpha-l-Fucp-(1 -> 2)[alpha-d-GalNAcp-(1 -> 3)]-beta-d-Galp-OR) and blood group B (alpha-l-Fucp-(1 -> 2)[alpha-d-Galp-(1 -> 3)]-beta-d-Galp-OR) determinant structures, respectively. Structures of GTA and GTB in complex with their respective trisaccharide products reveal a conflict between the transferred sugar monosaccharide and the beta-phosphate of the UDP donor. Mapping of the binding epitopes by saturation transfer difference NMR measurements yielded data consistent with the X-ray structural results. Taken together these data suggest a mechanism of product release where monosaccharide transfer to the H-antigen acceptor induces active site disorder and ejection of the UDP leaving group prior to trisaccharide egress.
机译:人ABO(H)血液组A-和B合成糖基转移酶GTA和GTB已经在结构上表征,其具有与其各自的三糖抗原产物复合物的高分辨率。考虑到与其糖类反应产物复合物中收集的糖基转移酶结构的肾小序,这些发现特别及时。 GTA和GTB利用相同的受体底物,寡糖终止于α-L-FUCP-(1-> 2)-Beta-D-Galp-或(其中R是甘油脂或糖蛋白),但使用不同的UDP供体糖,UDP -N-乙酰甘油酰胺和UDP-半乳糖,产生血液组A(α-L-FUCP-(1-> 2)α-β-D-Galp-或)和血液B组(α-L- FUCP-(1-> 2)α分别的β-D-GALP-(1-> 3) - β-D-GALP-OR)的决定簇结构。 GTA和GTB的结构与它们各自的三糖产物中的络合物揭示了转移的糖单糖和UDP供体的β-磷酸酯之间的冲突。通过饱和转移差异NMR测量的结合表位的映射产生与X射线结构结果一致的数据。占据这些数据表明产品释放的机制,其中单糖转移到H-抗原受体诱导有源部位障碍和在三糖出口之前将UDP离开组的喷射。

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