bioRxiv Science⌕ Search

Biology subjects

Flint, L.

Publications and source records attributed to Flint, L..

3 recordsLinked to original sources

Triazolopyrimidines target aerobic respiration in Mycobacterium tuberculosis

We previously identified a series of triazolopyrimidines with anti-tubercular activity. We determined that Mycobacterium tuberculosis strains with mutations in a component of the cytochrome bc1 system (QcrB) were resistant to the series. A cytochrome bd oxidase deletion strain was also more sensitive to this series. We isolated resistant mutants, all of which had mutations in Rv1339. Compounds were active against intracellular bacteria but did not inhibit mitochondrial respiration in human HepG2 cells. These data are consistent with triazolopyrimidines acting via inhibition of M. tuberculosis QcrB.

microbiology↗

Identification of novel chemical scaffolds that inhibit the growth of Mycobacterium tuberculosis in macrophages

Mycobacterium tuberculosis is an important global pathogen for which new drugs are urgently required. The ability of the organism to survive and multiply within macrophages may contribute to the lengthy treatment regimen with multiple drugs that are required to cure the infection. We screened the MyriaScreen II diversity library of 10,000 compounds to identify novel inhibitors of M. tuberculosis growth within macrophage-like cells using high content analysis. Hits were selected which inhibited the intramacrophage growth of M. tuberculosis without significant cytotoxicity to infected macrophages. We selected and prioritized compound series based on their biological and physicochemical properties and the novelty of the chemotypes. We identified five chemical classes of interest and conducted limited catalog structure-activity relationship studies to determine their tractability. We tested activity against intracellular and extracellular M. tuberculosis, as well as cytoxicity against murine RAW264.7 and human HepG2 cells. Benzene amide ethers, thiophene carboxamides and thienopyridines were only active against intracellular bacteria, whereas the phenylthiourea series was also active against extracellular bacteria. One member of a phenyl pyrazole series was moderately active against extracellular bacteria. We identified the benzene amide ethers as an interesting series for further work. These new compound classes serve as starting points for the development of novel drugs to target intracellular M. tuberculosis.

microbiology↗

InhA inhibitors have activity against non-replicating Mycobacterium tuberculosis

We previously identified a diazaborine series with potential for development as a new tuberculosis drug. This series has activity in vitro and in vivo and targets cell wall biosynthesis via inhibition of InhA. We tested the ability of two molecules of the diazaborine series to kill non-replicating Mycobacterium tuberculosis in the nutrient starvation model; both molecules were bactericidal, reducing viability by >3 logs in 21 days. Activity was not inoculum-dependent and showed similar kill rates to other InhA inhibitors (isoniazid and NITD-916). We conclude that inhibition of InhA is bactericidal against nutrient-starved non-replicating M. tuberculosis.

microbiology↗