Chemical Validation of Mycobacterium tuberculosis Phosphopantetheine Adenylyltransferase Using Fragment Linking and CRISPR Interference.
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The coenzyme A (CoA) biosynthesis pathway has attracted attention as a potential target for much-needed novel antimicrobial drugs, including for the treatment of tuberculosis (TB), the lethal disease caused by Mycobacterium tuberculosis (Mtb). Seeking to identify inhibitors of Mtb phosphopantetheine adenylyltransferase (MtbPPAT), the enzyme that catalyses the penultimate step in CoA biosynthesis, we performed a fragment screen. In doing so, we discovered three series of fragments that occupy distinct regions of the MtbPPAT active site, presenting a unique opportunity for fragment linking. Here we show how, guided by X-ray crystal structures, we could link weakly-binding fragments to produce an active site binder with a KD <20 μM and on-target anti-Mtb activity, as demonstrated using CRISPR interference. This study represents a big step toward validating MtbPPAT as a potential drug target and designing a MtbPPAT-targeting anti-TB drug.
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Funder: Howard Hughes Medical Institute; Id: http://dx.doi.org/10.13039/100000011
Funder: South African Medical Research Council; Id: http://dx.doi.org/10.13039/501100001322
Funder: National Research Foundation; Id: http://dx.doi.org/10.13039/501100001321
Funder: Francis Crick Institute; Id: http://dx.doi.org/10.13039/100010438
Funder: Cystic Fibrosis Trust; Id: http://dx.doi.org/10.13039/501100000292
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1521-3773
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Seventh Framework Programme (HEALTH-F3-2011-260872)
National Health & Medical Research Council (1016357)

