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化学诱导剂在实验室条件下诱导深海细菌产生罕见的生物活性次生代谢产物。

Chemical Elicitors Induce Rare Bioactive Secondary Metabolites in Deep-Sea Bacteria under Laboratory Conditions.

作者信息

de Felício Rafael, Ballone Patricia, Bazzano Cristina Freitas, Alves Luiz F G, Sigrist Renata, Infante Gina Polo, Niero Henrique, Rodrigues-Costa Fernanda, Fernandes Arthur Zanetti Nunes, Tonon Luciane A C, Paradela Luciana S, Costa Renna Karoline Eloi, Dias Sandra Martha Gomes, Dessen Andréa, Telles Guilherme P, da Silva Marcus Adonai Castro, Lima Andre Oliveira de Souza, Trivella Daniela Barretto Barbosa

机构信息

Brazilian Biosciences National Laboratory (LNBio), National Center for Research in Energy and Materials (CNPEM), Campinas 13083-970, SP, Brazil.

Institute of Biology, University of Campinas (UNICAMP), Campinas 13083-862, SP, Brazil.

出版信息

Metabolites. 2021 Feb 12;11(2):107. doi: 10.3390/metabo11020107.

Abstract

Bacterial genome sequencing has revealed a vast number of novel biosynthetic gene clusters (BGC) with potential to produce bioactive natural products. However, the biosynthesis of secondary metabolites by bacteria is often silenced under laboratory conditions, limiting the controlled expression of natural products. Here we describe an integrated methodology for the construction and screening of an elicited and pre-fractionated library of marine bacteria. In this pilot study, chemical elicitors were evaluated to mimic the natural environment and to induce the expression of cryptic BGCs in deep-sea bacteria. By integrating high-resolution untargeted metabolomics with cheminformatics analyses, it was possible to visualize, mine, identify and map the chemical and biological space of the elicited bacterial metabolites. The results show that elicited bacterial metabolites correspond to 45% of the compounds produced under laboratory conditions. In addition, the elicited chemical space is novel (70% of the elicited compounds) or concentrated in the chemical space of drugs. Fractionation of the crude extracts further evidenced minor compounds (~90% of the collection) and the detection of biological activity. This pilot work pinpoints strategies for constructing and evaluating chemically diverse bacterial natural product libraries towards the identification of novel bacterial metabolites in natural product-based drug discovery pipelines.

摘要

细菌基因组测序揭示了大量具有产生生物活性天然产物潜力的新型生物合成基因簇(BGC)。然而,细菌产生次生代谢产物的生物合成在实验室条件下通常会沉默,这限制了天然产物的可控表达。在此,我们描述了一种用于构建和筛选海洋细菌诱导及预分级文库的综合方法。在这项初步研究中,对化学诱导剂进行了评估,以模拟自然环境并诱导深海细菌中隐秘BGC的表达。通过将高分辨率非靶向代谢组学与化学信息学分析相结合,能够可视化、挖掘、鉴定和绘制诱导细菌代谢产物的化学和生物空间。结果表明,诱导产生的细菌代谢产物约占实验室条件下产生化合物的45%。此外,诱导产生的化学空间是新颖的(约70%的诱导化合物)或集中在药物的化学空间中。粗提物的分级分离进一步证明了次要化合物(约90%的收集物)以及生物活性的检测。这项初步工作确定了在基于天然产物的药物发现流程中构建和评估化学多样性细菌天然产物文库以鉴定新型细菌代谢产物的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02ae/7918856/427a1d864de9/metabolites-11-00107-g002.jpg

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