Back to Search Start Over

Thienopyrimidinone Derivatives That Inhibit Bacterial tRNA (Guanine37

Authors :
Wenhe, Zhong
Kalyan Kumar, Pasunooti
Seetharamsing, Balamkundu
Yee Hwa, Wong
Qianhui, Nah
Vinod, Gadi
Shanmugavel, Gnanakalai
Yok Hian, Chionh
Megan E, McBee
Pooja, Gopal
Siau Hoi, Lim
Nelson, Olivier
Ed T, Buurman
Thomas, Dick
Chuan Fa, Liu
Julien, Lescar
Peter C, Dedon
Source :
Journal of Medicinal Chemistry
Publication Year :
2019

Abstract

Among the >120 modified ribonucleosides in the prokaryotic epitranscriptome, many tRNA modifications are critical to bacterial survival, which makes their synthetic enzymes ideal targets for antibiotic development. Here we performed a structure-based design of inhibitors of tRNA-(N1G37) methyltransferase, TrmD, which is an essential enzyme in many bacterial pathogens. On the basis of crystal structures of TrmDs from Pseudomonas aeruginosa and Mycobacterium tuberculosis, we synthesized a series of thienopyrimidinone derivatives with nanomolar potency against TrmD in vitro and discovered a novel active site conformational change triggered by inhibitor binding. This tyrosine-flipping mechanism is uniquely found in P. aeruginosa TrmD and renders the enzyme inaccessible to the cofactor S-adenosyl-l-methionine (SAM) and probably to the substrate tRNA. Biophysical and biochemical structure–activity relationship studies provided insights into the mechanisms underlying the potency of thienopyrimidinones as TrmD inhibitors, with several derivatives found to be active against Gram-positive and mycobacterial pathogens. These results lay a foundation for further development of TrmD inhibitors as antimicrobial agents.

Details

ISSN :
15204804
Volume :
62
Issue :
17
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.pmid..........6e127326354feb5fa511e9e28cdebdd6