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从丹参中克隆和鉴定参与二萜丹参酮积累的新型 3-羟基-3-甲基戊二酰辅酶 A 还原酶基因。

Cloning and characterization of a novel 3-hydroxy-3-methylglutaryl coenzyme A reductase gene from Salvia miltiorrhiza involved in diterpenoid tanshinone accumulation.

机构信息

Institute of Chinese Materia Medica, Chinese Academy of Chinese Medical Science, Beijing, China.

出版信息

J Plant Physiol. 2011 Jan 15;168(2):148-57. doi: 10.1016/j.jplph.2010.06.008. Epub 2010 Jul 15.

Abstract

The 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR) catalyzes the conversion of HMG-CoA to mevalonate (MVA), which is a rate-limiting step in the isoprenoid biosynthesis via the MVA pathway. In this study, the full-length cDNA encoding HMGR (designated as SmHMGR2, GenBank accession no. FJ747636) was isolated from Salvia miltiorrhiza by rapid amplification of cDNA ends (RACE). The cloned gene was then transformed into the hairy root of S. miltiorrhiza, and the enzyme activity and production of diterpenoid tanshinones and squalene were monitored. The full-length cDNA of SmHMGR2 comprises 1959bp, with a 1653-bp open reading frame encoding a 550-amino-acid protein. Molecular modeling showed that SmHMGR2 is a new HMGR with a spatial structure similar to other plant HMGRs. SmHMGR2 contains two HMG-CoA-binding motifs and two NADP(H)-binding motifs. The SmHMGR2 catalytic domain can form a homodimer. The deduced protein has an isoelectric point of 6.28 and a calculated molecular weight of approximately 58.67kDa. Sequence comparison analysis showed that SmHMGR2 had the highest homology to HMGR from Atractylodes lancea. As expected, a phylogenetic tree analysis indicates that SmHMGR2 belongs to plant HMGR group. Tissue expression pattern analysis shows that SmHMGR2 is strongly expressed in the leaves, stem, and roots. Functional complementation of SmHMGR2 in HMGR-deficient mutant yeast JRY2394 demonstrates that SmHMGR2 mediates the MVA biosynthesis in yeasts. Overexpression of SmHMGR2 increased enzyme activity and enhanced the production of tanshinones and squalene in cultured hairy roots of S. miltiorrhiza. Our DNA gel blot analysis has confirmed the presence and integration of the associated SmHMGR2 gene. SmHMGR2 is a novel and important enzyme involved in the biosynthesis of diterpenoid tanshinones in S. miltiorrhiza.

摘要

3-羟-3-甲基戊二酰辅酶 A 还原酶(HMGR)催化 HMG-CoA 转化为甲羟戊酸(MVA),这是异戊烯基生物合成途径中通过 MVA 途径的限速步骤。在这项研究中,通过快速扩增 cDNA 末端(RACE)从丹参中分离出编码 HMGR 的全长 cDNA(命名为 SmHMGR2,GenBank 登录号为 FJ747636)。然后将克隆的基因转化到丹参的毛状根中,并监测酶活性和二萜丹参酮和角鲨烯的产量。SmHMGR2 的全长 cDNA 由 1959bp 组成,其中 1653bp 开放阅读框编码 550 个氨基酸的蛋白质。分子建模表明,SmHMGR2 是一种新的 HMGR,具有与其他植物 HMGR 相似的空间结构。SmHMGR2 包含两个 HMG-CoA 结合基序和两个 NADP(H)结合基序。SmHMGR2 催化结构域可以形成同源二聚体。推导的蛋白质等电点为 6.28,计算分子量约为 58.67kDa。序列比较分析表明,SmHMGR2 与白术 HMGR 的同源性最高。正如预期的那样,系统发育树分析表明 SmHMGR2 属于植物 HMGR 组。组织表达模式分析表明,SmHMGR2 在叶片、茎和根中强烈表达。SmHMGR2 在 HMGR 缺陷型酵母 JRY2394 中的功能互补表明,SmHMGR2 介导酵母中的 MVA 生物合成。SmHMGR2 的过表达增加了酶活性,并增强了丹参毛状根中丹参酮和角鲨烯的产生。我们的 DNA 凝胶印迹分析已经证实了相关 SmHMGR2 基因的存在和整合。SmHMGR2 是丹参中二萜丹参酮生物合成中的一种新型重要酶。

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