硒代半胱氨酸
催化三位一体
谷氨酰胺
磷脂过氧化氢谷胱甘肽过氧化物酶
组氨酸
化学
硒
过氧化物酶
色氨酸
半胱氨酸
谷胱甘肽过氧化物酶
活动站点
立体化学
谷胱甘肽
三合会(社会学)
生物化学
氨基酸
酶
有机化学
精神分析
心理学
作者
Matilde Maiorino,Klaus-Dieter Aumann,R. Brigelius‐Flohé,Denise Dória,Joop van den Heuvel,J. Michael McCarthy,Antonella Roveri,Fulvio Ursini,Leopold Flohé
出处
期刊:PubMed
日期:1998-01-01
卷期号:37 Suppl 1: 118-21
被引量:32
摘要
Glutathione peroxidases (GPx) are characterized by a catalytically active selenium which forms the center of a strictly conserved triad composed of selenocysteine, glutamine, and tryptophan. In order to check the functional relevance of this structural peculiarity, six molecular mutants of phospholipid hydroperoxide glutathione peroxidase (PHGPx) were designed, isolated, and investigated kinetically. Replacement of the selenocysteine in position 46 by cysteine decreased k + 1, i.e., the reaction rate of reduced enzyme with hydroperoxide, by three orders of magnitude. The rate of regeneration of the reduced enzyme by glutathione (k' + 2) was similarly affected. Additional substitution of Gln81 or Trp136 by acid residues resulted in a further decrease of k + 1 by three orders of magnitude, whereas histidine or neutral residues in these positions proved to be less deleterious. The data support the hypothesis that the typical triad of selenocysteine, glutamine, and tryptophan is indeed a novel catalytic center in which the reactivity of selenium is optimized by hydrogen bonding provided by the adjacent glutamine and tryptophan residues.
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