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  Type S Non Ribosomal Peptide Synthetases for the rapid generation of tailor-made peptide libraries

Abbood, N., Vo, T. D., Watzel, J., Bozhueyuek, K. A. J., & Bode, H. B. (2021). Type S Non Ribosomal Peptide Synthetases for the rapid generation of tailor-made peptide libraries. bioRxiv.

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Abbood, Nadya1, Autor
Vo, Tien Duy1, Autor
Watzel, Jonas1, Autor
Bozhueyuek, Kenan A. J.1, Autor
Bode, Helge B.1, Autor
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1external, ou_persistent22              

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 Zusammenfassung: Bacterial natural products in general, and non-ribosomally synthesized peptides in particular, are structurally diverse and provide us with a broad range of pharmaceutically relevant bioactivities. Yet, traditional natural product research suffers from rediscovering the same scaffolds and has been stigmatized as inefficient, time-, labour- and cost-intensive. Combinatorial chemistry, on the other hand, can produce new molecules in greater numbers, cheaper and in less time than traditional natural product discovery, but also fails to meet current medical needs due to the limited biologically relevant chemical space that can be addressed. Consequently, methods for the high throughput generation of new-to-nature natural products would offer a new approach to identifying novel bioactive chemical entities for the hit to lead phase of drug discovery programms. As a follow-up to our previously published proof-of-principle study on generating bipartite type S non-ribosomal peptide synthetases (NRPSs), we now envisaged the de novo generation of non-ribosomal peptides (NRPs) on an unreached scale. Using synthetic zippers, we split NRPS in up to three subunits and rapidly generated different bi- and tripartite NRPS libraries to produce 49 peptides, peptide derivatives, and de novo peptides at good titres up to 145 mgL-1. A further advantage of type S NRPSs not only is the possibility to easily expand the created libraries by re-using previously created type S NRPS, but that functions of individual domains as well as domain-domain interactions can be studied and assigned rapidly.Competing Interest StatementThe authors have declared no competing interest.

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 Datum: 2021-01
 Publikationsstatus: Erschienen
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Titel: bioRxiv
Genre der Quelle: Zeitschrift
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Seiten: 2021.10.25.465728 Band / Heft: - Artikelnummer: - Start- / Endseite: - Identifikator: -