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留兰香(薄荷属)油腺中的4S-柠檬烯合酶。催化活性单萜环化酶的cDNA分离、表征及细菌表达。

4S-limonene synthase from the oil glands of spearmint (Mentha spicata). cDNA isolation, characterization, and bacterial expression of the catalytically active monoterpene cyclase.

作者信息

Colby S M, Alonso W R, Katahira E J, McGarvey D J, Croteau R

机构信息

Institute of Biological Chemistry, Washington State University, Pullman 99164-6340.

出版信息

J Biol Chem. 1993 Nov 5;268(31):23016-24.

PMID:8226816
Abstract

The committed step in the biosynthesis of monoterpenes in mint (Mentha) species is the cyclization of geranyl pyrophosphate to the olefin (-)-4S-limonene catalyzed by limonene synthase (cyclase). Internal amino acid sequences of the purified enzyme from spearmint oil glands were utilized to design three distinct oligonucleotide probes. These probes were subsequently employed to screen a spearmint leaf cDNA library, and four clones were isolated. Three of these cDNA isolates were full-length and were functionally expressed in Escherichia coli, yielding a peptide that is immunologically recognized by polyclonal antibodies raised against the purified limonene synthase from spearmint and that is catalytically active in generating from geranyl pyrophosphate a product distribution identical to that of the native enzyme (principally limonene with small amounts of the coproducts alpha- and beta-pinene and myrcene). The longest open reading frame is 1800 nucleotides and the deduced amino acid sequence contains a putative plastidial transit peptide of approximately 90 amino acids and a mature protein of about 510 residues corresponding to the native enzyme. Several nucleotide differences in the 5'-untranslated region of all three full-length clones suggest the presence of several limonene synthase genes and/or alleles in the allotetraploid spearmint genome. Sequence comparisons with a sesquiterpene cyclase, epi-aristolochene synthase from tobacco, and a diterpene cyclase, casbene synthase from castor bean, demonstrated a significant degree of similarity between these three terpenoid cyclase types, the first three examples of this large family of catalysts to be described from higher plants.

摘要

薄荷属植物中单萜生物合成的关键步骤是香叶基焦磷酸在柠檬烯合酶(环化酶)催化下环化生成烯烃(-)-4S-柠檬烯。利用从留兰香油腺中纯化得到的酶的内部氨基酸序列设计了三种不同的寡核苷酸探针。随后用这些探针筛选留兰香叶cDNA文库,分离得到四个克隆。其中三个cDNA分离物是全长的,并在大肠杆菌中进行了功能表达,产生了一种肽,该肽能被针对从留兰香中纯化的柠檬烯合酶产生的多克隆抗体免疫识别,并且在从香叶基焦磷酸生成产物分布与天然酶相同的产物(主要是柠檬烯,还有少量副产物α-蒎烯、β-蒎烯和月桂烯)方面具有催化活性。最长的开放阅读框为1800个核苷酸,推导的氨基酸序列包含一个约90个氨基酸的假定质体转运肽和一个约510个残基的成熟蛋白,与天然酶相对应。所有三个全长克隆的5'-非翻译区存在几个核苷酸差异,这表明在异源四倍体留兰香基因组中存在几个柠檬烯合酶基因和/或等位基因。与一种倍半萜环化酶(烟草中的表-马兜铃烯合酶)和一种二萜环化酶(蓖麻中的蓖麻烯合酶)的序列比较表明,这三种萜类环化酶类型之间存在显著的相似性,这是高等植物中描述的这个大家族催化剂的前三个例子。

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