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Homology modeling and PAPS ligand (cofactor) binding study of bovine phenol sulfotransferase

机译:牛苯酚磺基转移酶的同源造型和PAPS配体(Cofactor)结合研究

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In order to understand the mechanisms of ligand binding and the interaction between the ligand and the bovine phenol sulfotransferase, (bSULT1A1, EC 2.8.2.1) a three-dimensional (3D) model of the bSULT1A1 is generated based on the crystal structure of the estrogen sulfotransferase (PDB code 1AQU) by using the In-sightII/Homology module. With the aid of the molecular mechanics and molecular dynamics methods, the final refined model is obtained and is further assessed by Pro-file-3D and ProStat, which show that the refined model is reliable. With this model, a flexible docking study is performed and the results indicate that 3'-phosphoadeno-sine-5'- phosphosulfate (PAPS) is a more preferred ligand than coenzyme A (CoA), and that His108 forms hydrogen bond with PAPS, which is in good agreement with the experimental results. From these docking studies, we also suggest that Phe255, Phe24 and Tyr169 in bSULT1A1 are three important determinant residues in binding as they have strong van-der-Waals contacts with the ligand. The hydrogen-bonding interactions also play an important role for the stability of the complex. Our results may be helpful for further experimental investigations.
机译:为了了解配体结合的机制和配体和牛酚磺旋转转移酶之间的相互作用,(Bsult1a1,Ec 2.8.2.1)基于雌激素的晶体结构产生Bsult1a1的三维(3D)模型使用In-Sightii /同源模块磺胺转移酶(PDB代码1AQU)。借助于分子力学和分子动力学方法,获得最终的精制模型,并通过Pro-File-3D和Prostat进一步评估,表明精制模型可靠。通过该模型,进行柔性对接研究,结果表明3'-磷纳 - 正弦-5'-磷硫酸盐(PAPS)是比辅酶A(COA)更优选的配体,并且HIS108与PAPS形成氢键,这与实验结果一致。从这些对接研究中,我们还表明,BSult1A1中的PHE255,PHE24和TYR169是三个重要的决定因子残留物,因为它们具有与配体的强大的VAN-DER-WAALS接触。氢键相互作用也为复合物的稳定性发挥着重要作用。我们的结果可能有助于进一步的实验研究。

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