An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters

ABSTRACT The phylum Actinomycetota and genus Streptomyces in particular are the major source for discovery of natural products with diverse chemical structures and a variety of biological activities. Genes encoding biosynthetic pathways for bacterial natural products are grouped together into biosyn...

Full description

Bibliographic Details
Main Authors: Olena Kurylenko, Anja Palusczak, Andriy Luzhetskyy, Yuriy Rebets
Format: Article
Language:English
Published: Wiley 2024-12-01
Series:Microbial Biotechnology
Subjects:
Online Access:https://doi.org/10.1111/1751-7915.70067
_version_ 1826919292858269696
author Olena Kurylenko
Anja Palusczak
Andriy Luzhetskyy
Yuriy Rebets
author_facet Olena Kurylenko
Anja Palusczak
Andriy Luzhetskyy
Yuriy Rebets
author_sort Olena Kurylenko
collection DOAJ
description ABSTRACT The phylum Actinomycetota and genus Streptomyces in particular are the major source for discovery of natural products with diverse chemical structures and a variety of biological activities. Genes encoding biosynthetic pathways for bacterial natural products are grouped together into biosynthetic gene clusters (BGCs). The size of a typical actinobacterial BGC may range from 10 kb to 200 kb, which makes their cloning for heterologous expression a challenging task. Various DNA cloning and assembly methods have been established for capturing BGCs. Among them, the transformation‐associated recombination (TAR) in Saccharomyces cerevisiae remains one of the most cost‐effective, accessible, customisable and precise approaches. However, the drawback of TAR cloning is a need for intensive screening of clones in order to identify one carrying the BGC. In this study, we report a further development of the TAR cloning approach by introducing the direct selection of colonies with BGC of interest based on the yeast killer phenomenon. For this, a new TAR cloning vector system was constructed and the strategy was validated by successful cloning of chelocardin (35 kb) BGC from Amycolatopsis sulphurea and daptomycin BGC (67 kb) from Streptomyces filamentosus. Both BGCs were functionally expressed in a heterologous host, resulting in the production of the corresponding antibiotics. The proposed approach could be widely applied for precise direct cloning of BGCs from the representatives of phylum Actinomycetota and easily adopted for other bacteria.
first_indexed 2025-02-17T13:06:54Z
format Article
id doaj.art-da870cd6ebeb4de096902349e2306092
institution Directory Open Access Journal
issn 1751-7915
language English
last_indexed 2025-02-17T13:06:54Z
publishDate 2024-12-01
publisher Wiley
record_format Article
series Microbial Biotechnology
spelling doaj.art-da870cd6ebeb4de096902349e23060922024-12-27T06:34:32ZengWileyMicrobial Biotechnology1751-79152024-12-011712n/an/a10.1111/1751-7915.70067An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene ClustersOlena Kurylenko0Anja Palusczak1Andriy Luzhetskyy2Yuriy Rebets3Explogen LLC Lviv UkrainePharmazeutische Biotechnologie Universität des Saarlandes Saarbrücken GermanyPharmazeutische Biotechnologie Universität des Saarlandes Saarbrücken GermanyExplogen LLC Lviv UkraineABSTRACT The phylum Actinomycetota and genus Streptomyces in particular are the major source for discovery of natural products with diverse chemical structures and a variety of biological activities. Genes encoding biosynthetic pathways for bacterial natural products are grouped together into biosynthetic gene clusters (BGCs). The size of a typical actinobacterial BGC may range from 10 kb to 200 kb, which makes their cloning for heterologous expression a challenging task. Various DNA cloning and assembly methods have been established for capturing BGCs. Among them, the transformation‐associated recombination (TAR) in Saccharomyces cerevisiae remains one of the most cost‐effective, accessible, customisable and precise approaches. However, the drawback of TAR cloning is a need for intensive screening of clones in order to identify one carrying the BGC. In this study, we report a further development of the TAR cloning approach by introducing the direct selection of colonies with BGC of interest based on the yeast killer phenomenon. For this, a new TAR cloning vector system was constructed and the strategy was validated by successful cloning of chelocardin (35 kb) BGC from Amycolatopsis sulphurea and daptomycin BGC (67 kb) from Streptomyces filamentosus. Both BGCs were functionally expressed in a heterologous host, resulting in the production of the corresponding antibiotics. The proposed approach could be widely applied for precise direct cloning of BGCs from the representatives of phylum Actinomycetota and easily adopted for other bacteria.https://doi.org/10.1111/1751-7915.70067Actinomycetotaantibioticsbiosynthetic gene clusternatural productssecondary metabolitesStreptomyces
spellingShingle Olena Kurylenko
Anja Palusczak
Andriy Luzhetskyy
Yuriy Rebets
An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
Microbial Biotechnology
Actinomycetota
antibiotics
biosynthetic gene cluster
natural products
secondary metabolites
Streptomyces
title An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
title_full An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
title_fullStr An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
title_full_unstemmed An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
title_short An Improved Transformation‐Associated Recombination Cloning Approach for Direct Capturing of Natural Product Biosynthetic Gene Clusters
title_sort improved transformation associated recombination cloning approach for direct capturing of natural product biosynthetic gene clusters
topic Actinomycetota
antibiotics
biosynthetic gene cluster
natural products
secondary metabolites
Streptomyces
url https://doi.org/10.1111/1751-7915.70067
work_keys_str_mv AT olenakurylenko animprovedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT anjapalusczak animprovedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT andriyluzhetskyy animprovedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT yuriyrebets animprovedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT olenakurylenko improvedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT anjapalusczak improvedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT andriyluzhetskyy improvedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters
AT yuriyrebets improvedtransformationassociatedrecombinationcloningapproachfordirectcapturingofnaturalproductbiosyntheticgeneclusters