Molecular cloning and functional analysis of the gene encoding 3-hydroxy-3-methylglutaryl coenzyme A reductase from hazel (Corylus avellana L. Gasaway).

Yechun Wang, Binhui Guo, Fei Zhang, Hongyan Yao, Zhiqi Miao, Kexuan Tang
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引用次数: 41

Abstract

The enzyme 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR; EC1.1.1.34) catalyzes the first committed step of isoprenoids biosynthesis in MVA pathway. Here we report for the first time the cloning and characterization of a full-length cDNA encoding HMGR (designated as CgHMGR, GenBank accession number EF206343) from hazel (Corylus avellana L. Gasaway), a taxol-producing plant species. The full-length cDNA of CgHMGR was 2064 bp containing a 1704-bp ORF encoding 567 amino acids. Bioinformatic analyses revealed that the deduced CgHMGR had extensive homology with other plant HMGRs and contained two transmembrane domains and a catalytic domain. The predicted 3-D model of CgHMGR had a typical spatial structure of HMGRs. Southern blot analysis indicated that CgHMGR belonged to a small gene family. Expression analysis revealed that CgHMGR expressed high in roots, and low in leaves and stems, and the expression of CgHMGR could be up-regulated by methyl jasmonate (MeJA). The functional color assay in Escherichia coli showed that CgHMGR could accelerate the biosynthesis of beta-carotene, indicating that CgHMGR encoded a functional protein. The cloning, characterization and functional analysis of CgHMGR gene will enable us to further understand the role of CgHMGR involved in taxol biosynthetic pathway in C. avellana at molecular level.

榛子3-羟基-3-甲基戊二酰辅酶A还原酶基因的克隆及功能分析。
3-羟基-3-甲基戊二酰辅酶a还原酶(HMGR);EC1.1.1.34)在MVA途径中催化类异戊二烯生物合成的第一步。本文首次从紫杉醇生产植物榛子(Corylus avellana L. Gasaway)中克隆并鉴定了HMGR全长cDNA(编码为CgHMGR, GenBank登录号EF206343)。CgHMGR cDNA全长2064 bp, ORF全长1704 bp,编码567个氨基酸。生物信息学分析表明,CgHMGR与其他植物hmgr具有广泛的同源性,并且包含两个跨膜结构域和一个催化结构域。预测的CgHMGR三维模型具有典型的hmgr空间结构。Southern blot分析表明,CgHMGR属于一个小基因家族。表达分析表明,CgHMGR在根中表达量高,在叶和茎中表达量低,茉莉酸甲酯(MeJA)可上调CgHMGR的表达。大肠杆菌的功能显色实验表明,CgHMGR可以促进β -胡萝卜素的生物合成,表明CgHMGR编码了一种功能蛋白。CgHMGR基因的克隆、鉴定和功能分析将有助于我们在分子水平上进一步了解CgHMGR基因在紫杉醇生物合成途径中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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