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双重位置特异性玉米脂氧合酶的生化特性以及前稳态动力学过程中滞后和初始爆发现象对pH、底物和去污剂的依赖性

Biochemical characterization of the dual positional specific maize lipoxygenase and the dependence of lagging and initial burst phenomenon on pH, substrate, and detergent during pre-steady state kinetics.

作者信息

Cho Kyoungwon, Jang Sungkuk, Huon Thavrak, Park Sangwook, Han Oksoo

机构信息

Department of Molecular Biotechnology, Agricultural Plant Stress Research Center, Biotechnology Research Institute, College of Agriculture and Life Sciences, Chonnam National University, Kwangju 500-757, Republic of Korea.

出版信息

J Biochem Mol Biol. 2007 Jan 31;40(1):100-6. doi: 10.5483/bmbrep.2007.40.1.100.

Abstract

The wound-inducible lipoxygenase obtained from maize is one of the nontraditional lipoxygenases that possess dual positional specificity. In this paper, we provide our results on the determination and comparison of the kinetic constants of the maize lipoxygenase, with or without detergents in the steady state, and characterization of the dependence of the kinetic lag phase or initial burst, on pH, substrate, and detergent in the pre-steady state of the lipoxygenase reaction. The oxidation of linoleic acid showed a typical lag phase in the pre-steady state of the lipoxygenase reaction at pH 7.5 in the presence of 0.25% Tween-20 detergent. The reciprocal correlation between the induction period and the enzyme level indicated that this lag phenomenon was attributable to the slow oxidative activation of Fe (II) to Fe (III) at the active site of the enzyme as observed in other lipoxygenase reactions. Contrary to the lagging phenomenon observed at pH 7.5 in the presence of Tween-20, a unique initial burst was observed at pH 6.2 in the absence of detergents. To our knowledge, the initial burst in the oxidation of linoleic acid at pH 6.2 is the first observation in the lipoxygenase reaction. Kinetic constants (K(m) and k(cat) values) were largely dependent on the presence of detergent. An inverse correlation of the initial burst period with enzyme levels and interpretations on kinetic constants suggested that the observed initial burst in the oxidation of linoleic acid could be due to the availability of free fatty acids as substrates for binding with the lipoxygenase enzyme.

摘要

从玉米中获得的伤口诱导型脂氧合酶是具有双重位置特异性的非传统脂氧合酶之一。在本文中,我们给出了关于玉米脂氧合酶在稳态下有无去污剂时动力学常数的测定与比较结果,以及在脂氧合酶反应的预稳态下,动力学延迟期或初始爆发对pH、底物和去污剂的依赖性的表征。在含有0.25%吐温-20去污剂的情况下,在pH 7.5的脂氧合酶反应预稳态中,亚油酸的氧化呈现出典型的延迟期。诱导期与酶水平之间的倒数相关性表明,这种延迟现象归因于酶活性位点上Fe (II) 缓慢氧化为Fe (III),这与其他脂氧合酶反应中观察到的情况相同。与在吐温-20存在下pH 7.5时观察到的延迟现象相反,在没有去污剂的情况下,在pH 6.2时观察到独特的初始爆发。据我们所知,在pH 6.2时亚油酸氧化的初始爆发是脂氧合酶反应中的首次观察结果。动力学常数(K(m) 和k(cat) 值)在很大程度上取决于去污剂的存在。初始爆发期与酶水平的负相关以及对动力学常数的解释表明,观察到的亚油酸氧化初始爆发可能是由于游离脂肪酸作为底物与脂氧合酶结合的可用性。

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