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涉及 ustus 曲霉中多个基因簇的倍半萜蛇孢菌素生物合成。

Sesterterpene ophiobolin biosynthesis involving multiple gene clusters in Aspergillus ustus.

作者信息

Chai Hangzhen, Yin Ru, Liu Yongfeng, Meng Huiying, Zhou Xianqiang, Zhou Guolin, Bi Xupeng, Yang Xue, Zhu Tonghan, Zhu Weiming, Deng Zixin, Hong Kui

机构信息

Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, and Wuhan University School of Pharmaceutical Sciences, Wuhan, 430071, PR China.

BGI-Shenzhen, Shenzhen 518083, China.

出版信息

Sci Rep. 2016 Jun 7;6:27181. doi: 10.1038/srep27181.

Abstract

Terpenoids are the most diverse and abundant natural products among which sesterterpenes account for less than 2%, with very few reports on their biosynthesis. Ophiobolins are tricyclic 5-8-5 ring sesterterpenes with potential pharmaceutical application. Aspergillus ustus 094102 from mangrove rizhosphere produces ophiobolin and other terpenes. We obtained five gene cluster knockout mutants, with altered ophiobolin yield using genome sequencing and in silico analysis, combined with in vivo genetic manipulation. Involvement of the five gene clusters in ophiobolin synthesis was confirmed by investigation of the five key terpene synthesis relevant enzymes in each gene cluster, either by gene deletion and complementation or in vitro verification of protein function. The results demonstrate that ophiobolin skeleton biosynthesis involves five gene clusters, which are responsible for C15, C20, C25, and C30 terpenoid biosynthesis.

摘要

萜类化合物是最多样化且最丰富的天然产物,其中倍半萜烯类化合物占比不到2%,关于其生物合成的报道极少。蛇孢菌素是具有潜在药用价值的三环5-8-5环倍半萜烯类化合物。来自红树林根际的黑曲霉094102能产生蛇孢菌素和其他萜类化合物。我们通过基因组测序和计算机分析,并结合体内基因操作,获得了五个基因簇敲除突变体,其蛇孢菌素产量发生了改变。通过对每个基因簇中五个关键萜类合成相关酶进行基因缺失和互补研究,或对蛋白质功能进行体外验证,证实了这五个基因簇参与蛇孢菌素的合成。结果表明,蛇孢菌素骨架生物合成涉及五个基因簇,它们分别负责C15、C20、C25和C30萜类化合物的生物合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/255e/4895135/116e091d52ef/srep27181-f1.jpg

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