Alternative enzymatic pathways to penicillin antibiotics

P Puja Saha G Guangcai Xu D Deepanjan Panda D Duncan Smith W Wei Li Thong L Luke Ward L Luis Bering S Sebastian Cuesta-Hoyos S Sarah A. Shepherd J Jason Micklefield

Abstract

Abstract The discovery of penicillin, more than a century ago, has been one of the most significant advances in medicine. Despite the growing threat of antimicrobial resistance, which has rendered many other antibiotics ineffective, penicillin derivatives remain among the most widely prescribed antibiotics. Penicillin is biosynthesised by a large nonribosomal peptide synthetase (NRPS) enzyme, which assembles a tripeptide precursor ACV. This intermediate is subsequently cyclised by isopenicillin N synthase (IPNS) to form penicillin. ACV is similar in structure to glutathione, a ubiquitous, tripeptide antioxidant essential for aerobic life forms. Unlike ACV, glutathione is assembled using simpler ligase enzymes rather than complex NRPS machinery. In this paper, we describe an alternative pathway to penicillins that uses stand-alone ligase and epimerase enzymes to generate peptide precursors, which can be transformed to penicillin derivatives using an engineered IPNS enzyme. Unlike the native NRPS assembly line, the ligase pathway provides direct access to therapeutically relevant penicillin G, penicillin V and ampicillin, which are currently produced by semi-synthesis.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 30, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

P

Puja Saha

G

Guangcai Xu

D

Deepanjan Panda

D

Duncan Smith

W

Wei Li Thong

L

Luke Ward

L

Luis Bering

S

Sebastian Cuesta-Hoyos

S

Sarah A. Shepherd

J

Jason Micklefield