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“异裂氢过氧化物裂解酶”是一种产生短寿命脂肪酸半缩醛的异构酶。

The "heterolytic hydroperoxide lyase" is an isomerase producing a short-lived fatty acid hemiacetal.

作者信息

Grechkin Alexander N, Hamberg Mats

机构信息

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.

出版信息

Biochim Biophys Acta. 2004 Feb 27;1636(1):47-58. doi: 10.1016/j.bbalip.2003.12.003.

Abstract

To elucidate the reaction mechanism of hydroperoxide lyase (HPL), the enzyme from guava (Psidium guajava) fruits, was incubated for 10-60 s at 0 degrees C with 13-HPOT. The products were rapidly extracted and derivatized by trimethylsilylation. Two trapping products, namely the trimethylsilyl ether/ester derivatives of the hemiacetal 12-(1'-hydroxy-3'-hexenyloxy)-9,11-dodecadienoic acid and the enol (9Z,11E)-12-hydroxy-9,11-dodecadienoic acid, were detected by gas chromatography-mass spectrometry (GC-MS) analyses. The structural assignments were supported by mass spectra recorded for (a) hydrogenated products; (b) products biosynthesized from [9,10,12,13,15,16] 13-HPOT or [(18)O(2)]13-HPOT; (c) chemically prepared reference compounds. Kinetic experiments showed that the hemiacetal and enol were both unstable and transiently appearing compounds (half-lives, ca. 20 s and 2 min, respectively). Hemiacetal and enol biosynthesized from [(18)O(2)]13-HPOT retained two and one (18)O atoms, respectively, whereas no (18)O was incorporated from [(18)O]water. The data demonstrated that: (1) the true enzymatic product formed from 13-HPOT in the presence of HPL is a short-lived hemiacetal; (2) the hemiacetal spontaneously dissociates into (3Z)-hexenal and the unstable enol form of (9Z)-12-oxo-9-dodecenoic acid; (3) the enzymatic isomerization of 13-HPOT into the hemiacetal occurs homolytically.

摘要

为阐明番石榴(番石榴属)果实中的氢过氧化物裂解酶(HPL)的反应机制,将该酶于0℃与13-HPOT孵育10 - 60秒。产物迅速提取并用三甲基硅烷化进行衍生化。通过气相色谱 - 质谱(GC-MS)分析检测到两种捕获产物,即半缩醛12-(1'-羟基-3'-己烯氧基)-9,11-十二碳二烯酸的三甲基硅醚/酯衍生物和烯醇(9Z,11E)-12-羟基-9,11-十二碳二烯酸。结构归属得到以下质谱记录的支持:(a)氢化产物;(b)由[9,10,12,13,15,16] 13-HPOT或[(18)O(2)]13-HPOT生物合成的产物;(c)化学制备的参考化合物。动力学实验表明,半缩醛和烯醇都是不稳定的瞬态出现的化合物(半衰期分别约为20秒和2分钟)。由[(18)O(2)]13-HPOT生物合成的半缩醛和烯醇分别保留了两个和一个(18)O原子,而[(18)O]水中的(18)O未被掺入。数据表明:(1)在HPL存在下由13-HPOT形成的真正酶促产物是一种寿命短暂的半缩醛;(2)半缩醛自发解离为(3Z)-己醛和(9Z)-12-氧代-9-十二碳烯酸的不稳定烯醇形式;(3)13-HPOT酶促异构化为半缩醛的过程以均裂方式发生。

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