Natural products from filamentous fungi and production by heterologous expression

被引:0
作者
Fabrizio Alberti
Gary D. Foster
Andy M. Bailey
机构
[1] University of Warwick,School of Life Sciences and Department of Chemistry
[2] University of Bristol,School of Biological Sciences
来源
Applied Microbiology and Biotechnology | 2017年 / 101卷
关键词
Fungi; Heterologous expression; Natural products; Gene clusters; Secondary metabolites;
D O I
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中图分类号
学科分类号
摘要
Filamentous fungi represent an incredibly rich and rather overlooked reservoir of natural products, which often show potent bioactivity and find applications in different fields. Increasing the naturally low yields of bioactive metabolites within their host producers can be problematic, and yield improvement is further hampered by such fungi often being genetic intractable or having demanding culturing conditions. Additionally, total synthesis does not always represent a cost-effective approach for producing bioactive fungal-inspired metabolites, especially when pursuing assembly of compounds with complex chemistry. This review aims at providing insights into heterologous production of secondary metabolites from filamentous fungi, which has been established as a potent system for the biosynthesis of bioactive compounds. Numerous advantages are associated with this technique, such as the availability of tools that allow enhanced production yields and directing biosynthesis towards analogues of the naturally occurring metabolite. Furthermore, a choice of hosts is available for heterologous expression, going from model unicellular organisms to well-characterised filamentous fungi, which has also been shown to allow the study of biosynthesis of complex secondary metabolites. Looking to the future, fungi are likely to continue to play a substantial role as sources of new pharmaceuticals and agrochemicals—either as producers of novel natural products or indeed as platforms to generate new compounds through synthetic biology.
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页码:493 / 500
页数:7
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[41]  
Schweizer E(2007)Isolation and characterisation of a ferrirhodin synthetase gene from the sugarcane pathogen J Biol Chem 282 16829-28
[42]  
Hopwood DA(2008)Heterologous reconstitution of the intact geodin gene cluster in J Biosci Bioeng 106 466-4845
[43]  
Khosla C(2015) through a simple and versatile PCR based approach Microb Biotechnol 8 26-107
[44]  
Brakhage AA(2015)Gene clustering in plant specialized metabolism Chem Sci 6 4837-599
[45]  
Schroeckh V(2003)Secondary metabolic gene clusters: evolutionary toolkits for chemical innovation Toxicol Lett 143 97-1263
[46]  
Cohen JA(1989)A toolkit for heterologous expression of metabolic pathways in Agric Biol Chem 53 593-2080
[47]  
Barkhof F(2013)Biosynthesis of complex polyketides in a metabolically engineered strain of J Am Chem Soc 135 1260-643
[48]  
Comi G(2014)Biosynthesis of yersiniabactin, a complex polyketide-nonribosomal peptide, using Chembiochem 15 2076-125
[49]  
Hartung H-P(2015) as a heterologous host J Biosci Bioeng 120 637-44
[50]  
Khatri BO(1994)Production of the antimalarial drug precursor artemisinic acid in engineered yeast Curr Genet 26 120-313