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沙漠松露(Terfezia claveryi Chatin)子囊果中脂氧合酶的动力学特性:抑制剂和激活剂的影响

Kinetic properties of lipoxygenase from desert truffle (Terfezia claveryi Chatin) ascocarps: effect of inhibitors and activators.

作者信息

Pérez-Gilabert Manuela, Sánchez-Felipe Isabel, Morte Asunción, García-Carmona Francisco

机构信息

Departamento de Bioquímica y Biología Molecular-A, Facultad de Biología, Universidad de Murcia, Campus de Espinardo, E-30071 Murcia, Spain.

出版信息

J Agric Food Chem. 2005 Jul 27;53(15):6140-5. doi: 10.1021/jf050521b.

Abstract

There is very little information available on the kinetic characteristics of fungal lipoxygenases (LOXs) because most data on the mechanism of this enzyme concern soybean LOX. In this paper, the kinetic properties of LOX from Terfezia claveryi Chatin ascocarps were studied for the first time. The enzyme did not show the "substrate aggregation-dependent activity" described for other LOXs and presented a K(m) for linoleic acid of 41 microM at pH 7.0. The effect of different inhibitors was also studied. The enzyme presented the characteristic lag phase of other LOXs, and the influence of different factors on its duration was analyzed. The lag period was reduced not only by the product of the reaction (13-HPOD) but also by 9-HPOD. Calculation of the activation constant is proposed for the first time as a useful tool for the characterization of LOX because this method makes it possible to quantify the effectiveness of different hydroperoxides as LOX activators. The activation constants obtained were 0.3 and 6.4 microM for 13- and 9-HPOD, respectively; thus, the product of the reaction was approximately 21-fold more effective than 9-HPOD as a T. claveryi LOX activator.

摘要

关于真菌脂氧合酶(LOXs)的动力学特性,目前可获取的信息非常少,因为关于这种酶作用机制的大多数数据都与大豆脂氧合酶有关。在本文中,首次对来自克拉氏块菌子囊果的脂氧合酶的动力学特性进行了研究。该酶未表现出其他脂氧合酶所描述的“底物聚集依赖性活性”,在pH 7.0时对亚油酸的米氏常数(K(m))为41微摩尔。还研究了不同抑制剂的作用。该酶呈现出其他脂氧合酶特有的延迟期,并分析了不同因素对其持续时间的影响。不仅反应产物(13 - 氢过氧十八碳二烯酸,13 - HPOD),而且9 - 氢过氧十八碳二烯酸(9 - HPOD)都能缩短延迟期。首次提出计算活化常数,作为表征脂氧合酶的一种有用工具,因为这种方法能够量化不同氢过氧化物作为脂氧合酶激活剂的有效性。对于13 - HPOD和9 - HPOD,获得的活化常数分别为0.3和6.4微摩尔;因此,作为克拉氏块菌脂氧合酶的激活剂,反应产物的有效性约为9 - HPOD的21倍。

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