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首页> 外文期刊>Journal of Molecular Biology >Structure-activity relationships and thermal stability of human glutathione transferase P1-1 governed by the H-site residue 105
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Structure-activity relationships and thermal stability of human glutathione transferase P1-1 governed by the H-site residue 105

机译:受H位残基控制的人谷胱甘肽转移酶P1-1的结构活性关系和热稳定性105

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摘要

Human glutathione transferase P1-1 (GSTP1-1) is polymorphic in amino acid residue 105, positioned in the substrate binding II-site. To elucidate the role of this residue an extensive characterization of GSTP1-1/Ile105 and GSTP1-1/Val105 was performed. Mutant enzymes with altered volume and hydrophobicity of residue 105, GSTP1-1/Ala105 and GSTP1-1/Trp105, were constructed and included in the study. Steady-state kinetic parameters and specific activities were determined using a panel of electrophilic substrates, with the aim of covering different types of reaction mechanisms. Analysis of the steady-state kinetic parameters indicates that the effect of the substitution of the amino acid in position 105 is highly dependent on substrate us ed. When 1-chloro-2,4-dinitrobenzene was used as substrate a change in the side-chain of residue 105 seemed primarily to cause changes in the K-M,value, while the k(cat) value was not distinctively affected. With other substrates, such as 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole and ethacrynic acid both k(cat) and K-M values were altered by the substitution of amino acid 105. The constant for formation of the sigma-complex between 1,3,5-trinitrobenzene and glutathione was shown to be dependent upon the volume of the amino acid in position 105. The nature of the amino acid in position 105 was also shown to affect the thermal stability of the enzyme at 50 degrees C, indicating an important role for this residue in the stabilization of the enzyme. The GSTP1-1/ Ile105 variant was approximately two to three times more stable than the Val105 variant as judged by their half-lives. The presence of,glutathione in the incubation buffer afforded a threefold increase in the half-lives of the enzymes. Thus, tl-le thermal stability of the enzyme and depending on substrate, both K-M values and turnover numbers are influenced by substitutions in position 105 of GSTP1-1. (C) 1998 Academic Press Limited. [References: 50]
机译:人谷胱甘肽转移酶P1-1(GSTP1-1)在氨基酸残基105中处于多态性,位于底物结合II位点。为了阐明该残基的作用,对GSTP1-1 / Ile105和GSTP1-1 / Val105进行了广泛的表征。构建了具有改变的残基105和GSTP1-1 / Ala105和GSTP1-1 / Trp105的体积和疏水性的突变酶,并将其纳入研究。使用一组亲电底物确定稳态动力学参数和比活,目的是涵盖不同类型的反应机理。对稳态动力学参数的分析表明,位置105处氨基酸的取代作用高度依赖于所用的底物。当使用1-氯-2,4-二硝基苯作为底物时,残基105侧链的变化似乎主要引起K-M,值的变化,而k(cat)值并未受到明显影响。对于其他底物,例如7-氯-4-硝基苯并-2-氧杂-1,3-二唑和乙炔酸,k(cat)和KM值都通过氨基酸105的取代而改变。 1,3,5-三硝基苯和谷胱甘肽之间的sigma络合物显示取决于位置105上氨基酸的体积。位置105上氨基酸的性质也显示出会影响酶在105位的热稳定性。 50摄氏度,表明该残基在酶的稳定中起着重要作用。根据其半衰期判断,GSTP1-1 / Ile105变体的稳定性比Val105变体高约2至3倍。孵育缓冲液中谷胱甘肽的存在使酶的半衰期增加了三倍。因此,酶的t-le热稳定性以及取决于底物的K-M值和周转数均受GSTP1-1的位置105的取代影响。 (C)1998 Academic Press Limited。 [参考:50]

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