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Natural Product Inhibition and Enzyme Kinetics Related to Phylogenetic Characterization for Bacterial Peptidyl-tRNA Hydrolase 1
Authors:D Scott Strange  Steven S Gaffin  W Blake Holloway  Meredyth D Kinsella  Jacob N Wisotsky  Hana McFeeters  Robert L McFeeters
Institution:1.Department of Chemistry, University of Alabama in Huntsville, Huntsville, AL 35899, USA; (D.S.S.); (W.B.H.); (H.M.);2.Department of Biology, University of Alabama in Huntsville, Huntsville, AL 35899, USA; (S.S.G.); (M.D.K.); (J.N.W.)
Abstract:With the relentless development of drug resistance and re-emergence of many pathogenic bacteria, the need for new antibiotics and new antibiotic targets is urgent and growing. Bacterial peptidyl-tRNA hydrolase, Pth1, is emerging as a promising new target for antibiotic development. From the conserved core and high degree of structural similarity, broad-spectrum inhibition is postulated. However, Pth1 small-molecule inhibition is still in the earliest stages. Focusing on pathogenic bacteria, herein we report the phylogenetic classification of Pth1 and natural product inhibition spanning phylogenetic space. While broad-spectrum inhibition is found, narrow-spectrum and even potentially clade-specific inhibition is more frequently observed. Additionally reported are enzyme kinetics and general in vitro Pth1 solubility that follow phylogenetic boundaries along with identification of key residues in the gate loop region that appear to govern both. The studies presented here demonstrate the sizeable potential for small-molecule inhibition of Pth1, improve understanding of Pth enzymes, and advance Pth1 as a much-needed novel antibiotic target.
Keywords:peptidyl-tRNA hydrolase  novel antibiotic target  protein biosynthesis  phylogenetic analysis  natural product inhibition  broad- and narrow-spectrum inhibition
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