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UDP-2F-半乳糖与α-1,3-半乳糖基转移酶结合诱导的构象变化——对催化作用的影响

Conformational changes induced by binding UDP-2F-galactose to alpha-1,3 galactosyltransferase- implications for catalysis.

作者信息

Jamaluddin Haryati, Tumbale Percy, Withers Stephen G, Acharya K Ravi, Brew Keith

机构信息

Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.

出版信息

J Mol Biol. 2007 Jun 22;369(5):1270-81. doi: 10.1016/j.jmb.2007.04.012. Epub 2007 Apr 12.

Abstract

Alpha-1,3 galactosyltransferase (alpha3GT) catalyzes the transfer of galactose from UDP-galactose to beta-linked galactosides with retention of its alpha configuration. Although several complexes of alpha3GT with inhibitors and substrates have been reported, no structure has been determined of a complex containing intact UDP-galactose. We describe the structure of a complex containing an inhibitory analogue of UDP-galactose, UDP-2F-galactose, in a complex with the Arg365Lys mutant of alpha3GT. The inhibitor is bound in a distorted, bent configuration and comparison with the structure of the apo form of this mutant shows that the interaction induces structural changes in the enzyme, implying a role for ground state destabilization in catalysis. In addition to a general reduction in flexibility in the enzyme indicated by a large reduction in crystallographic B-factors, two loops, one centred around Trp195 and one encompassing the C-terminal 11 residues undergo large structural changes in complexes with UDP and UDP derivatives. The distorted configuration of the bound UDP-2F-galactose in its complex is stabilized, in part, by interactions with residues that are part of or near the flexible loops. Mutagenesis and truncation studies indicate that two highly conserved basic amino acid residues in the C-terminal region, Lys359 and Arg365 are important for catalysis, probably reflecting their roles in these ligand-mediated conformational changes. A second Mn(2+) cofactor has been identified in the catalytic site of a complex of the Arg365Lys with UDP, in a location that suggests it could play a role in facilitating UDP release, consistent with kinetic studies that show alpha3GT activity depends on the binding of two manganese ions. Conformational changes in the C-terminal 11 residues require an initial reorganization of the Trp195 loop and are linked to enzyme progress through the catalytic cycle, including donor substrate distortion, cleavage of the UDP-galactose bond, galactose transfer, and UDP release.

摘要

α-1,3-半乳糖基转移酶(α3GT)催化半乳糖从尿苷二磷酸半乳糖(UDP-半乳糖)转移至β-连接的半乳糖苷上,并保留其α构型。尽管已经报道了α3GT与抑制剂和底物的几种复合物结构,但尚未确定包含完整UDP-半乳糖的复合物结构。我们描述了一种复合物的结构,该复合物包含UDP-半乳糖的抑制类似物UDP-2F-半乳糖,与α3GT的Arg365Lys突变体形成复合物。抑制剂以扭曲、弯曲的构型结合,与该突变体的无配体形式结构比较表明,这种相互作用诱导了酶的结构变化,这意味着基态失稳在催化过程中发挥作用。除了晶体学B因子大幅降低表明酶的柔韧性普遍降低外,两个环,一个以Trp195为中心,另一个包含C末端的11个残基,在与UDP和UDP衍生物形成复合物时发生了大的结构变化。结合的UDP-2F-半乳糖在其复合物中的扭曲构型部分通过与柔性环的一部分或附近的残基相互作用而得以稳定。诱变和截短研究表明,C末端区域的两个高度保守的碱性氨基酸残基Lys359和Arg365对催化很重要,这可能反映了它们在这些配体介导的构象变化中的作用。在Arg365Lys与UDP形成的复合物的催化位点中鉴定出第二个Mn(2+)辅因子,其位置表明它可能在促进UDP释放中发挥作用,这与动力学研究一致,该研究表明α3GT活性取决于两个锰离子的结合。C末端11个残基的构象变化需要Trp195环的初始重组,并与酶通过催化循环的进程相关,包括供体底物变形、UDP-半乳糖键的断裂、半乳糖转移和UDP释放。

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