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Small molecule binding, docking, and characterization of the interaction between Pth1 and peptidyl-tRNA.


ABSTRACT: Bacterial Pth1 is essential for viability. Pth1 cleaves the ester bond between the peptide and nucleotide of peptidyl-tRNA generated from aborted translation, expression of mini-genes, and short ORFs. We have determined the shape of the Pth1:peptidyl-tRNA complex using small angle neutron scattering. Binding of piperonylpiperazine, a small molecule constituent of a combinatorial synthetic library common to most compounds with inhibitory activity, was mapped to Pth1 via NMR spectroscopy. We also report computational docking results, modeling piperonylpiperazine binding based on chemical shift perturbation mapping. Overall these studies promote Pth1 as a novel antibiotic target, contribute to understanding how Pth1 interacts with its substrate, advance the current model for cleavage, and demonstrate feasibility of small molecule inhibition.

SUBMITTER: Hames MC 

PROVIDER: S-EPMC3856088 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Small molecule binding, docking, and characterization of the interaction between Pth1 and peptidyl-tRNA.

Hames Mary C MC   McFeeters Hana H   Holloway W Blake WB   Stanley Christopher B CB   Urban Volker S VS   McFeeters Robert L RL  

International journal of molecular sciences 20131119 11


Bacterial Pth1 is essential for viability. Pth1 cleaves the ester bond between the peptide and nucleotide of peptidyl-tRNA generated from aborted translation, expression of mini-genes, and short ORFs. We have determined the shape of the Pth1:peptidyl-tRNA complex using small angle neutron scattering. Binding of piperonylpiperazine, a small molecule constituent of a combinatorial synthetic library common to most compounds with inhibitory activity, was mapped to Pth1 via NMR spectroscopy. We also  ...[more]

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