Patteson_2018_Biochemistry_57_61

Reference

Title : Identification of the Biosynthetic Pathway for the Antibiotic Bicyclomycin - Patteson_2018_Biochemistry_57_61
Author(s) : Patteson JB , Cai W , Johnson RA , Santa Maria KC , Li B
Ref : Biochemistry , 57 :61 , 2018
Abstract :

Diketopiperazines (DKPs) make up a large group of natural products with diverse structures and biological activities. Bicyclomycin is a broad-spectrum DKP antibiotic with unique structure and function: it contains a highly oxidized bicyclic [4.2.2] ring and is the only known selective inhibitor of the bacterial transcription termination factor, Rho. Here, we identify the biosynthetic gene cluster for bicyclomycin containing six iron-dependent oxidases. We demonstrate that the DKP core is made by a tRNA-dependent cyclodipeptide synthase, and hydroxylations on two unactivated sp(3) carbons are performed by two mononuclear iron, alpha-ketoglutarate-dependent hydroxylases. Using bioinformatics, we also identify a homologous gene cluster prevalent in a human pathogen Pseudomonas aeruginosa. We detect bicyclomycin by overexpressing this gene cluster and establish P. aeruginosa as a new producer of bicyclomycin. Our work uncovers the biosynthetic pathway for bicyclomycin and sheds light on the intriguing oxidation chemistry that converts a simple DKP into a powerful antibiotic.

PubMedSearch : Patteson_2018_Biochemistry_57_61
PubMedID: 29053243
Gene_locus related to this paper: strcj-a0a2g1xfc8 , strcj-a0a2g1xp02

Related information

Gene_locus strcj-a0a2g1xfc8    strcj-a0a2g1xp02
Gene_locus_frgt strcj-a0a2g1xqr4    strcj-a0a2g1xqs1

Citations formats

Patteson JB, Cai W, Johnson RA, Santa Maria KC, Li B (2018)
Identification of the Biosynthetic Pathway for the Antibiotic Bicyclomycin
Biochemistry 57 :61

Patteson JB, Cai W, Johnson RA, Santa Maria KC, Li B (2018)
Biochemistry 57 :61