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担子菌门绒盖牛肝菌中两种新型倍半萜合酶的生物技术潜力及初步特征,用于 δ-杜松醇的异源生产。

Biotechnological potential and initial characterization of two novel sesquiterpene synthases from Basidiomycota Coniophora puteana for heterologous production of δ-cadinol.

机构信息

Werner Siemens Chair of Synthetic Biotechnology, Department of Chemistry, Technical University of Munich, Lichtenbergstr. 4, 85748, Garching, Germany.

Institute for Chemistry and Biochemistry, Structural Biochemistry Laboratory, Freie Universität Berlin, Takustr. 6, 14195, Berlin, Germany.

出版信息

Microb Cell Fact. 2022 Apr 19;21(1):64. doi: 10.1186/s12934-022-01791-8.

Abstract

BACKGROUND

Terpene synthases are versatile catalysts in all domains of life, catalyzing the formation of an enormous variety of different terpenoid secondary metabolites. Due to their diverse bioactive properties, terpenoids are of great interest as innovative ingredients in pharmaceutical and cosmetic applications. Recent advances in genome sequencing have led to the discovery of numerous terpene synthases, in particular in Basidiomycota like the wood rotting fungus Coniophora puteana, which further enhances the scope for the manufacture of terpenes for industrial purposes.

RESULTS

In this study we describe the identification of two novel (+)-δ-cadinol synthases from C. puteana, Copu5 and Copu9. The sesquiterpene (+)-δ-cadinol was previously shown to exhibit cytotoxic activity therefore having an application as possible, new, and sustainably sourced anti-tumor agent. In an Escherichia coli strain, optimized for sesquiterpene production, titers of 225 mg l and 395 mg l, respectively, could be achieved. Remarkably, both enzymes share the same product profile thereby representing the first two terpene synthases from Basidiomycota with identical product profiles. We solved the crystal structure of Copu9 in its closed conformation, for the first time providing molecular details of sesquiterpene synthase from Basidiomycota. Based on the Copu9 structure, we conducted structure-based mutagenesis of amino acid residues lining the active site, thereby altering the product profile. Interestingly, the mutagenesis study also revealed that despite the conserved product profiles of Copu5 and Copu9 different conformational changes may accompany the catalytic cycle of the two enzymes. This observation suggests that the involvement of tertiary structure elements in the reaction mechanism(s) employed by terpene synthases may be more complex than commonly expected.

CONCLUSION

The presented product selectivity and titers of Copu5 and Copu9 may pave the way towards a sustainable, biotechnological production of the potentially new bioactive (+)-δ-cadinol. Furthermore, Copu5 and Copu9 may serve as model systems for further mechanistic studies of terpenoid catalysis.

摘要

背景

萜烯合酶是所有生命领域中多功能的催化剂,催化形成各种不同的萜类次生代谢物。由于萜类化合物具有多种多样的生物活性,因此作为药物和化妆品应用中的创新成分,萜类化合物具有很大的吸引力。基因组测序的最新进展导致了许多萜烯合酶的发现,特别是在担子菌纲中,如腐朽真菌 Coprinopsis puteana,这进一步增强了工业生产萜烯的范围。

结果

在这项研究中,我们描述了从 Coprinopsis puteana 中鉴定出的两种新型(+)-δ-卡杜醇合酶,Copu5 和 Copu9。先前的研究表明,倍半萜(+)-δ-卡杜醇具有细胞毒性活性,因此可能作为一种新的、可持续的抗肿瘤药物应用。在优化用于生产倍半萜的大肠杆菌菌株中,分别可以达到 225mg/L 和 395mg/L 的产量。值得注意的是,这两种酶具有相同的产物谱,因此代表了第一个具有相同产物谱的担子菌纲萜烯合酶。我们首次解决了 Copu9 的闭构晶体结构,提供了担子菌纲倍半萜合酶的分子细节。基于 Copu9 的结构,我们对沿活性位点排列的氨基酸残基进行了基于结构的突变,从而改变了产物谱。有趣的是,突变研究还表明,尽管 Copu5 和 Copu9 的产物谱保守,但不同的构象变化可能伴随着两种酶的催化循环。这一观察结果表明,萜烯合酶所采用的反应机制中三级结构元素的参与可能比通常预期的更为复杂。

结论

Copu5 和 Copu9 的呈现的产物选择性和产率可能为可持续的、生物技术生产具有潜在新生物活性的(+)-δ-卡杜醇铺平道路。此外,Copu5 和 Copu9 可以作为萜类催化进一步机制研究的模型系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10d1/9019933/842ee8ec6d0e/12934_2022_1791_Fig1_HTML.jpg

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