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首页> 外文期刊>Insect Molecular Biology >3-hydroxy-3-methyl glutaryl coenzyme A reductase: an essential actor in the biosynthesis of cantharidin in the blister beetle Epicauta chinensis Laporte
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3-hydroxy-3-methyl glutaryl coenzyme A reductase: an essential actor in the biosynthesis of cantharidin in the blister beetle Epicauta chinensis Laporte

机译:3-羟基-3-甲基戊二酰辅酶A还原酶:在水泡甲虫Epicauta chinensis Laporte中的th他丁生物合成中的重要角色

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摘要

Cantharidin (C10H12O4) is a monoterpene defensive toxin in insects involved in chemical defence as well as in courtship and mating behaviours. It is relatively well known in the medical literature because of its high anticancer activity and as an effective therapy for molluscum contagiosum. However, little is known about its biosynthesis pathway in vivo, and no enzyme involved in cantharidin biosynthesis has been identified. The purpose of this study was to identify the crucial enzyme that is involved in the biosynthesis of cantharidin. Using the homology cloning method, a 3-hydroxy-3-methyl glutaryl coenzyme A reductase (HMGR) gene, the rate-limiting enzyme in the mevalonate pathway, was cloned from the blister beetle Epicauta chinensis. Quantitative reverse transcription PCR and gas chromatography methods revealed that the HMGR transcripts had a positive correlation with cantharidin production in the beetles (R=0.891). RNA interference (RNAi) knockdown of HMGR mRNA expression was achieved by microinjection of a specific double-stranded RNA with more than 90% RNAi efficiency, and an apparent decrease of cantharidin production was observed. Furthermore, the HMGR mRNA was greatly upregulated by exogenous juvenile hormone III (JH III), and cantharidin production was also raised in males; however, when injecting the JH III with RNAi of HMGR mRNA at the same time, cantharidin production did not rise. These results demonstrate that HMGR is an essential enzyme in cantharidin biosynthesis in the blister beetle E. chinensis, which further verifies previous research results demonstrating that cantharidin is synthesized de novo by the mevalonate pathway in blister beetles.
机译:Cantharidin(C10H12O4)是一种单萜防御毒素,可用于涉及化学防御以及求偶和交配行为的昆虫。由于其高抗癌活性和作为传染性软体动物的有效疗法,因此在医学文献中相对众所周知。然而,关于其在体内的生物合成途径知之甚少,并且尚未鉴定出与鸟th素生物合成有关的酶。这项研究的目的是确定与邻苯二酚生物合成有关的关键酶。使用同源克隆方法,从水泡甲虫Epicauta chinensis中克隆了3-羟-3-甲基戊二酰辅酶A还原酶(HMGR)基因,即甲羟戊酸途径中的限速酶。定量反转录PCR和气相色谱方法显示,HMGR转录物与甲虫中的th鱼din素产生呈正相关(R = 0.891)。 HMGR mRNA表达的RNA干扰(RNAi)敲低是通过以特定的双链RNA进行显微注射实现的,RNAi效率超过90%,并且观察到了邻苯二酚的产量明显减少。此外,HMGR mRNA受到外源少年激素III(JH III)的极大上调,男性中的鸟th素产生也增加了。但是,同时向HMGR mRNA的RNAi注射JH III时,邻苯二酚的产量并未增加。这些结果表明,HMGR是水泡甲虫E.cantharidin生物合成中必不可少的酶,这进一步验证了先前的研究结果,证明了水泡甲虫中的甲羟戊酸途径是从头合成Cantharidin的。

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