Literature DB >> 33974270

Microparticles enhance the formation of seven major classes of natural products in native and metabolically engineered actinobacteria through accelerated morphological development.

Martin Kuhl1, Christian Rückert2, Lars Gläser1, Selma Beganovic1, Andriy Luzhetskyy3, Jörn Kalinowski2, Christoph Wittmann1.   

Abstract

Actinobacteria provide a rich spectrum of bioactive natural products and therefore display an invaluable source towards commercially valuable pharmaceuticals and agrochemicals. Here, we studied the use of inorganic talc microparticles (hydrous magnesium silicate, 3MgO·4SiO2 ·H2 O, 10 µm) as a general supplement to enhance natural product formation in this important class of bacteria. Added to cultures of recombinant Streptomyces lividans, talc enhanced production of the macrocyclic peptide antibiotic bottromycin A2 and its methylated derivative Met-bottromycin A2 up to 109 mg L-1 , the highest titer reported so far. Hereby, the microparticles fundamentally affected metabolism. With 10 g L-1 talc, S. lividans grew to 40% smaller pellets and, using RNA sequencing, revealed accelerated morphogenesis and aging, indicated by early upregulation of developmental regulator genes such as ssgA, ssgB, wblA, sigN, and bldN. Furthermore, the microparticles re-balanced the expression of individual bottromycin cluster genes, resulting in a higher macrocyclization efficiency at the level of BotAH and correspondingly lower levels of non-cyclized shunt by-products, driving the production of mature bottromycin. Testing a variety of Streptomyces species, talc addition resulted in up to 13-fold higher titers for the RiPPs bottromycin and cinnamycin, the alkaloid undecylprodigiosin, the polyketide pamamycin, the tetracycline-type oxytetracycline, and the anthramycin-analogs usabamycins. Moreover, talc addition boosted production in other actinobacteria, outside of the genus of Streptomyces: vancomycin (Amycolatopsis japonicum DSM 44213), teicoplanin (Actinoplanes teichomyceticus ATCC 31121), and the angucyclinone-type antibiotic simocyclinone (Kitasatospora sp.). For teicoplanin, the microparticles were even crucial to activate production. Taken together, the use of talc was beneficial in 75% of all tested cases and optimized natural and heterologous hosts forming the substance of interest with clusters under native and synthetic control. Given its simplicity and broad benefits, microparticle-supplementation appears as an enabling technology in natural product research of these most important microbes.
© 2021 The Authors. Biotechnology and Bioengineering published by Wiley Periodicals LLC.

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Keywords:  zzm321990Actinoplaneszzm321990; zzm321990Amycolatopsiszzm321990; zzm321990Kitasatosporazzm321990; zzm321990Streptomyceszzm321990; bottromycin; morphology

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Year:  2021        PMID: 33974270     DOI: 10.1002/bit.27818

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  2 in total

1.  Properties of Spontaneous rpsL Mutant of Streptomyces albus KO-1297.

Authors:  A L Shemediuk; B S Dolia; K Ochi; V O Fedorenko; B O Ostash
Journal:  Cytol Genet       Date:  2022-02-11       Impact factor: 0.579

2.  Co-cultivation of filamentous microorganisms in the presence of aluminum oxide microparticles.

Authors:  Tomasz Boruta; Anna Antecka
Journal:  Appl Microbiol Biotechnol       Date:  2022-07-30       Impact factor: 5.560

  2 in total

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