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首页> 外文期刊>Archives of Biochemistry and Biophysics >A role for His-160 in peroxide inhibition of S. cerevisiae S-formylglutathione hydrolase: Evidence for an oxidation sensitive motif
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A role for His-160 in peroxide inhibition of S. cerevisiae S-formylglutathione hydrolase: Evidence for an oxidation sensitive motif

机译:His-160在过氧化物抑制啤酒酵母S-甲酰基谷胱甘肽水解酶中的作用:氧化敏感基序的证据

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While the general catalytic mechanism of the widespread serine hydrolase superfamily has been documented extensively, much less is known about its varied modes of functional modulation within biological systems. Under oxidizing conditions, inhibition of Saccharomyces cerevisiae S-formylglutathione hydrolase (SFGH, homologous to human esterase D) activity is attributable to a cysteine (Cys-60) adjacent to its catalytic triad and approximately 8.0 ? away from the Oγ of the nucleophilic serine. Cys-60 is oxidized to a sulfenic acid in the structure of the Paraoxon-inhibited W197I variant (PDB 3C6B). The structural snap-shot captured an unstable reversibly oxidized state, but it remained unclear as to whether the oxidation occurred before, during, or after the reaction with the organophosphate inhibitor. To determine if the oxidation of Cys-60 was functionally linked to ester hydrolysis, we used kinetic analysis and site-directed mutagenesis in combination with X-ray crystallography. The essential nature of Cys-60 for oxidation is demonstrated by the C60S variant, which is not inhibited by peroxide in the presence or absence of substrate. In the presence of substrate, the rate of inhibition of the WT SFGH by peroxide increases 14-fold, suggesting uncompetitive behavior linking oxidation to ester hydrolysis. Here we found one variant, H160I, which is activated by peroxide. This variant is activated at comparable rates in the presence or absence of substrate, indicating that the conserved His-160 is involved in the inhibitory mechanism linking ester hydrolysis to the oxidation of Cys-60. Copper chloride inhibition experiments show that at least two metal ions bind and inhibit both WT and H160I. A structure of the Paraoxon-inhibited W197I variant soaked with CuCl _2 shows density for one metal ion per monomer at the N-terminus, and density around the Cys-60 sulfur consistent with a sulfinic acid, Cys-SO _2. A Dali structural similarity search uncovered two other enzymes (Bacillus subtilis RsbQ, 1WOM and Clostridium acetobutylicum Lipase-esterase, 3E0X) that contain a similar Cys adjacent to a catalytic triad. We speculate that the regulatory motif uncovered is conserved in some D-type esterases and discuss its structural similarities in the active site of human protective protein (HPP; also known as Cathepsin A).
机译:尽管广泛地报道了广泛的丝氨酸水解酶超家族的一般催化机理,但对其在生物系统中功能调节的各种模式知之甚少。在氧化条件下,啤酒酵母S-甲酰基谷胱甘肽水解酶(SFGH,与人酯酶D同源)的抑制作用可归因于与其催化三联体相邻的半胱氨酸(Cys-60),约为8.0?。远离亲核丝氨酸的Oγ。在对氧磷抑制的W197I变体(PDB 3C6B)的结构中,Cys-60被氧化为亚磺酸。结构快照捕获了不稳定的可逆氧化状态,但是尚不清楚氧化是否发生在与有机磷酸酯抑制剂反应之前,之中或之后。为了确定Cys-60的氧化功能是否与酯水解相关,我们将动力学分析和定点诱变与X射线晶体学结合使用。 C60S变体证明了Cys-60氧化的基本性质,无论有无底物,过氧化物均不会抑制Cys-60。在存在底物的情况下,过氧化物对WT SFGH的抑制率增加了14倍,这表明将氧化与酯水解联系在一起的非竞争行为。在这里,我们发现了一种变体H160I,它被过氧化物激活。在存在或不存在底物的情况下,该变体以相当的速率被激活,表明保守的His-160参与了将酯水解与Cys-60氧化联系起来的抑制机制。氯化铜抑制实验表明,至少两个金属离子结合并抑制WT和H160I。用CuCl _2浸透的对氧磷抑制的W197I变体的结构显示,每个单体在N端具有一个金属离子的密度,并且在Cys-60硫周围的密度与亚磺酸Cys-SO _2一致。通过Dali结构相似性搜索,发现了另外两个酶(枯草芽孢杆菌RsbQ,1WOM和乙酰丁酸梭菌脂肪酶-酯酶3E0X),它们在催化三联体附近均含有相似的半胱氨酸。我们推测发现的调节基序在某些D型酯酶中是保守的,并讨论了其在人类保护蛋白(HPP;也称为组织蛋白酶A)的活性位点中的结构相似性。

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