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Computational studies on bergaptol O-methyltransferase from Ammi majus L.: The substrate specificity

机译:来自Ammi majus L.的bergaptol O-甲基转移酶的计算研究:底物特异性

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In order to understand (he mechanisms of substrate specificity and the interaction between bergaptol and bergaptol 0-methyltransferase (BMT), a 3D model of BMT is generated based on the crystal structure of caffeic acid 3-0-methy]transferase (COMT EC 2.1.1.68, PDB code 1KYZ) by using the InsightⅡ/Homology module. With the aid of the molecular mechanics and molecular dynamics methods, the final refined model is obtained and its reliability is further assessed by PROCHECK and ProSa2003. With this model, a flexible docking study is performed and the results indicate that BMT has narrow substrate specificity. Although the homology between both proteins is higher than 65% and all amino acids surrounding the binding site, except four residues, are similar in their sequences, the two proteins exhibit different substrate preferences. The differences in substrate specificity can be explained on the basis of the structures of the protein and the substrate. Our results indicate that His259 may be the catalytic base for the reaction, and Glu320, Glu287 bracket the catalytic His259. Especially, Glu320 forms a weak hydrogen bond with His259 and promotes transfer of an H ion.
机译:为了理解(他的底物特异性和Bergaptol和Bergaptol 0-甲基转移酶(BMT)的相互作用,基于咖啡酸3-0甲基的晶体结构产生BMT的3D模型(COMT EC 2.1 .1.68,PDB代码1kyz)通过使用InsightⅡ/同源模块。借助于分子力学和分子动力学方法,获得最终的精细模型,并通过Procheck和ProSa2003进一步评估其可靠性。通过该模型,灵活性进行对接研究,结果表明BMT具有窄的底物特异性。虽然两个蛋白质之间的同源性高于65%,但除了四个残基的结合位点周围的所有氨基酸在其序列中相似,两种蛋白质表现出不同底物偏好。基于蛋白质和基材的结构可以解释衬底特异性的差异。我们的结果表明他的259可能是反应的催化基碱和Glu320,Glu287括起催化His259。特别是,Glu320与HIS259形成弱氢键并促进H离子的转移。

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