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The productive conformation of prostaglandin G(2) at the peroxidase site of prostaglandin endoperoxide H synthase: Docking, molecular dynamics, and site-directed mutagenesis studies

机译:前列腺素内过氧化物H合酶过氧化物酶位点上前列腺素G(2)的生产构象:对接,分子动力学和定点诱变研究。

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摘要

We present a plausible productive conformation obtained by docking calculations for the binding of prostaglandin G(2) (PGG(2)) to the peroxidase site of prostaglandin endoperoxide H synthase-1 (PGHS-1, COX-1). The enzyme-substrate complex stability was verified by molecular dynamics. Structural analysis reveals the requirements for enzyme-substrate recognition and binding: the PGG2 15-hydroperoxide group is in the proximity of the heme iron and participates in a hydrogen bond network with the conserved His207 and Gln203 and a water molecule, whereas the carboxylate group forms salt bridges with the remote Lys215 and Lys222. Site-directed mutagenesis showed that a single mutation of Lys215 or Lys222 does not affect enzyme activity, whereas dual mutation of these residues, to either alanine or glutamate, significantly decreases turnover. This indicates that the conserved cationic pocket is involved in enzyme-substrate binding.
机译:我们提出通过对接前列腺素G(2)(PGG(2))到前列腺素内过氧化物H合酶1(PGHS-1,COX-1)的过氧化物酶位点的对接计算而获得的合理的生产构象。通过分子动力学验证了酶-底物复合物的稳定性。结构分析揭示了酶-底物识别和结合的要求:PGG2 15-氢过氧化物基团在血红素铁附近,并与保守的His207和Gln203和水分子一起参与氢键网络,而羧酸盐基团形成与远程Lys215和Lys222建立盐桥。定点诱变显示,Lys215或Lys222的单突变不会影响酶的活性,而这些残基的双突变(变为丙氨酸或谷氨酸)会显着降低周转率。这表明保守的阳离子袋参与酶-底物的结合。

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