Fang_2015_Chem.Biol_22_734

Reference

Title : Structural Basis for Specific Inhibition of tRNA Synthetase by an ATP Competitive Inhibitor - Fang_2015_Chem.Biol_22_734
Author(s) : Fang P , Han H , Wang J , Chen K , Chen X , Guo M
Ref : Chemical Biology , 22 :734 , 2015
Abstract :

Pharmaceutical inhibitors of aminoacyl-tRNA synthetases demand high species and family specificity. The antimalarial ATP-mimetic cladosporin selectively inhibits Plasmodium falciparum LysRS (PfLysRS). How the binding to a universal ATP site achieves the specificity is unknown. Here we report three crystal structures of cladosporin with human LysRS, PfLysRS, and a Pf-like human LysRS mutant. In all three structures, cladosporin occupies the class defining ATP-binding pocket, replacing the adenosine portion of ATP. Three residues holding the methyltetrahydropyran moiety of cladosporin are critical for the specificity of cladosporin against LysRS over other class II tRNA synthetase families. The species-exclusive inhibition of PfLysRS is linked to a structural divergence beyond the active site that mounts a lysine-specific stabilizing response to binding cladosporin. These analyses reveal that inherent divergence of tRNA synthetase structural assembly may allow for highly specific inhibition even through the otherwise universal substrate binding pocket and highlight the potential for structure-driven drug development.

PubMedSearch : Fang_2015_Chem.Biol_22_734
PubMedID: 26074468
Gene_locus related to this paper: clacd-cla3

Related information

Gene_locus clacd-cla3

Citations formats

Fang P, Han H, Wang J, Chen K, Chen X, Guo M (2015)
Structural Basis for Specific Inhibition of tRNA Synthetase by an ATP Competitive Inhibitor
Chemical Biology 22 :734

Fang P, Han H, Wang J, Chen K, Chen X, Guo M (2015)
Chemical Biology 22 :734