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Structural insights into omega-class glutathione transferases: a snapshot of enzyme reduction and identification of a non-catalytic ligandin site

机译:欧米茄级谷胱甘肽转移酶的结构见解:酶还原和非催化配体蛋白位点鉴定的快照

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摘要

Glutathione transferases (GSTs) are dimeric enzymes containing one active-site per monomer. The omega-class GSTs (hGSTO1-1 and hGSTO2-2 in humans) are homodimeric and carry out a range of reactions including the glutathione-dependant reduction of a range of compounds and the reduction of S-(phenacyl)glutathiones to acetophenones. Both types of reaction result in the formation of a mixed-disulfide of the enzyme with glutathione through the catalytic cysteine (C32). Recycling of the enzyme utilizes a second glutathione molecule and results in oxidized glutathione (GSSG) release. The crystal structure of an active-site mutant (C32A) of the hGSTO1-1 isozyme in complex with GSSG provides a snapshot of the enzyme in the process of regeneration. GSSG occupies both the G (GSH-binding) and H (hydrophobic-binding) sites and causes re-arrangement of some H-site residues. In the same structure we demonstrate the existence of a novel \u22ligandin\u22 binding site deep within in the dimer interface of this enzyme, containing S-(4-nitrophenacyl)glutathione, an isozyme-specific substrate for hGSTO1-1. The ligandin site, conserved in Omega class GSTs from a range of species, is hydrophobic in nature and may represent the binding location for tocopherol esters that are uncompetitive hGSTO1-1 inhibitors.
机译:谷胱甘肽转移酶(GST)是每个单体包含一个活性位点的二聚酶。 Ω类GST(人类中的hGSTO1-1和hGSTO2-2)是同型二聚体,可进行一系列反应,包括依赖于谷胱甘肽的一系列化合物还原以及将S-(苯甲酰基)谷胱甘肽还原为苯乙酮。两种类型的反应都导致酶与谷胱甘肽通过催化半胱氨酸(C32)形成混合二硫键。酶的再循环利用第二个谷胱甘肽分子,并导致氧化型谷胱甘肽(GSSG)释放。 hGSTO1-1同工酶与GSSG结合的活性位点突变体(C32A)的晶体结构提供了该酶在再生过程中的快照。 GSSG同时占据G(GSH结合)和H(疏水结合)位点,并导致一些H位置残基重新排列。在相同的结构中,我们证明了在该酶的二聚体界面深处存在一个新的\ u22ligandin \ u22结合位点,其中包含S-(4-硝基苯甲酰基)谷胱甘肽,它是hGSTO1-1的同功酶特异性底物。配体蛋白位点在一系列物种的Omega类GST中保守,本质上是疏水性的,可能代表了非竞争性hGSTO1-1抑制剂生育酚酯的结合位置。

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