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首页> 外文期刊>Glycobiology. >Structure-based mutagenic analysis of mechanism and substrate specificity in mammalian glycosyltransferases: porcine ST3Gal-I.
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Structure-based mutagenic analysis of mechanism and substrate specificity in mammalian glycosyltransferases: porcine ST3Gal-I.

机译:哺乳动物糖基转移酶:猪ST3Gal-1的机理和底物特异性的基于结构的诱变分析。

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摘要

Sialyltransferases (STs) play essential roles in signaling and in the cellular recognition processes of mammalian cells by selectively installing cell-surface sialic acids in an appropriate manner both temporally and organ-specifically. The availability of the first three-dimensional structure of a mammalian (GT29) sialyltransferase has, for the first time, allowed quantitative structure/function analyses to be performed, thereby providing reliable insights into the roles of key active site amino acids. Kinetic analyses of mutants of ST3Gal-I, in conjunction with structural studies, have confirmed the mechanistic roles of His302 and His319 as general acid and base catalysts, respectively, and have quantitated other interactions with the cytosine monophosphate-N-acetyl β-neuraminic acid donor substrate. The contributions of side chains that provide key interactions with the acceptor substrate, defining its specificity, have also been quantitated. Particularly important transition-state interactions of 2.5 and 2.7 kcal mol(-1) are found between the acceptor axial 4-hydroxyl and the conserved side chains of Gln108 and Tyr269, respectively. These results provide a basis for the engineering of mammalian STs to accommodate non-natural substrate analogs that should prove valuable as chemical biological probes of sialyltransferase function.
机译:唾液酸转移酶(ST)通过在时间和器官特异性上以适当的方式选择性地安装细胞表面唾液酸,在哺乳动物细胞的信号传导和细胞识别过程中发挥重要作用。哺乳动物(GT29)唾液酸转移酶的第一个三维结构的可用性首次允许进行定量的结构/功能分析,从而提供关键活性位点氨基酸的作用的可靠见解。结合结构研究对ST3Gal-1突变体进行动力学分析,证实了His302和His319分别作为普通酸和碱催化剂的机理作用,并定量了与胞嘧啶单磷酸-N-乙酰基β-神经氨酸的其他相互作用供体基质。还定量了提供与受体底物关键相互作用,定义其特异性的侧链的贡献。分别在受体轴向4-羟基和Gln108和Tyr269的保守侧链之间发现了特别重要的过渡态相互作用,分别为2.5和2.7 kcal mol(-1)。这些结果为哺乳动物STs的工程化提供了基础,以适应非天然底物类似物,其应被证明具有作为唾液酸转移酶功能的化学生物学探针的价值。

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