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脊椎动物脂氧合酶同工型反应特异性pH依赖性改变的结构基础。

Structural basis for pH-dependent alterations of reaction specificity of vertebrate lipoxygenase isoforms.

作者信息

Walther M, Roffeis J, Jansen C, Anton M, Ivanov I, Kuhn H

机构信息

Institute of Biochemistry, University Medicine Berlin - Charité, Germany.

出版信息

Biochim Biophys Acta. 2009 Aug;1791(8):827-35. doi: 10.1016/j.bbalip.2009.05.007. Epub 2009 May 28.

Abstract

Lipoxygenases have been classified according to their specificity of fatty acid oxygenation and for several plant enzymes pH-dependent alterations in the product patterns have been reported. Assuming that the biological role of mammalian lipoxygenases is based on the formation of specific reaction products, pH-dependent alterations would impact enzymes' functionality. In this study we systematically investigated the pH-dependence of vertebrate lipoxygenases and observed a remarkable stability of the product pattern in the near physiological range for the wild-type enzyme species. Site-directed mutagenesis of selected amino acids and alterations in the substrate concentrations induced a more pronounced pH-dependence of the reaction specificity. For instance, for the V603H mutant of the human 15-lipoxygenase-2 8-lipoxygenation was dominant at acidic pH (65%) whereas 15-H(p)ETE was the major oxygenation product at pH 8. Similarly, the product pattern of the wild-type mouse 8-lipoxygenase was hardly altered in the near physiological pH range but H604F exchange induced strong pH-dependent alterations in the positional specificity. Taken together, our data suggest that the reaction specificities of wild-type vertebrate lipoxygenase isoforms are largely resistant towards pH alterations. However, we found that changes in the assay conditions (low substrate concentration) and introduction/removal of a critical histidine at the active site impact the pH-dependence of reaction specificity for some lipoxygenase isoforms.

摘要

脂氧合酶已根据其脂肪酸氧化的特异性进行了分类,并且已有报道称几种植物酶的产物模式存在pH依赖性变化。假设哺乳动物脂氧合酶的生物学作用基于特定反应产物的形成,那么pH依赖性变化将影响酶的功能。在本研究中,我们系统地研究了脊椎动物脂氧合酶的pH依赖性,并观察到野生型酶在接近生理范围时产物模式具有显著的稳定性。对选定氨基酸进行定点诱变以及改变底物浓度会导致反应特异性对pH的依赖性更加明显。例如,对于人15-脂氧合酶-2的V603H突变体,在酸性pH(65%)下8-脂氧合作用占主导,而在pH 8时15-H(p)ETE是主要的氧化产物。同样,野生型小鼠8-脂氧合酶的产物模式在接近生理pH范围内几乎没有变化,但H604F交换导致位置特异性出现强烈的pH依赖性变化。综上所述,我们的数据表明野生型脊椎动物脂氧合酶同工型的反应特异性在很大程度上对pH变化具有抗性。然而,我们发现检测条件的变化(低底物浓度)以及在活性位点引入/去除关键组氨酸会影响某些脂氧合酶同工型反应特异性的pH依赖性。

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