» Articles » PMID: 29477072

Family-wide Analysis of Aminoacyl-sulfamoyl-3-deazaadenosine Analogues As Inhibitors of Aminoacyl-tRNA Synthetases

Overview
Journal Eur J Med Chem
Specialty Chemistry
Date 2018 Feb 25
PMID 29477072
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

Aminoacyl-tRNA synthetases (aaRSs) are enzymes that precisely attach an amino acid to its cognate tRNA. This process, which is essential for protein translation, is considered a viable target for the development of novel antimicrobial agents, provided species selective inhibitors can be identified. Aminoacyl-sulfamoyl adenosines (aaSAs) are potent orthologue specific aaRS inhibitors that demonstrate nanomolar affinities in vitro but have limited uptake. Following up on our previous work on substitution of the base moiety, we evaluated the effect of the N-position of the adenine by synthesizing the corresponding 3-deazaadenosine analogues (aaS3DAs). A typical organism has 20 different aaRS, which can be split into two distinct structural classes. We therefore coupled six different amino acids, equally targeting the two enzyme classes, via the sulfamate bridge to 3-deazaadenosine. Upon evaluation of the inhibitory potency of the obtained analogues, a clear class bias was noticed, with loss of activity for the aaS3DA analogues targeting class II enzymes when compared to the equivalent aaSA. Evaluation of the available crystallographic structures point to the presence of a conserved water molecule which could have importance for base recognition within class II enzymes, a property that can be explored in future drug design efforts.

Citing Articles

Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides.

Pang L, Lenders S, Osipov E, Weeks S, Rozenski J, Piller T Int J Mol Sci. 2022; 23(23).

PMID: 36499418 PMC: 9736012. DOI: 10.3390/ijms232315095.


Partitioning of the initial catalytic steps of leucyl-tRNA synthetase is driven by an active site peptide-plane flip.

Pang L, Zanki V, Strelkov S, Van Aerschot A, Gruic-Sovulj I, Weeks S Commun Biol. 2022; 5(1):883.

PMID: 36038645 PMC: 9424281. DOI: 10.1038/s42003-022-03825-8.


Aminoacyl-tRNA Synthetases as Valuable Targets for Antimicrobial Drug Discovery.

Pang L, Weeks S, Van Aerschot A Int J Mol Sci. 2021; 22(4).

PMID: 33578647 PMC: 7916415. DOI: 10.3390/ijms22041750.


Synthesis and Biological Evaluation of 1,3-Dideazapurine-Like 7-Amino-5-Hydroxymethyl-Benzimidazole Ribonucleoside Analogues as Aminoacyl-tRNA Synthetase Inhibitors.

Zhang B, Pang L, Nautiyal M, De Graef S, Gadakh B, Lescrinier E Molecules. 2020; 25(20).

PMID: 33081246 PMC: 7587597. DOI: 10.3390/molecules25204751.


Synthesis and Biological Evaluation of Lipophilic Nucleoside Analogues as Inhibitors of Aminoacyl-tRNA Synthetases.

Nautiyal M, Gadakh B, De Graef S, Pang L, Khan M, Xun Y Antibiotics (Basel). 2019; 8(4).

PMID: 31600972 PMC: 6963541. DOI: 10.3390/antibiotics8040180.