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Design, Synthesis, and Evaluation of Novel Δ2-Thiazolino 2-Pyridone Derivatives That Potentiate Isoniazid Activity in an Isoniazid-Resistant Mycobacterium tuberculosis Mutant.


ABSTRACT: Mycobacterium tuberculosis (Mtb) drug resistance poses an alarming threat to global tuberculosis control. We previously reported that C10, a ring-fused thiazolo-2-pyridone, inhibits Mtb respiration, blocks biofilm formation, and restores the activity of the antibiotic isoniazid (INH) in INH-resistant Mtb isolates. This discovery revealed a new strategy to address INH resistance. Expanding upon this strategy, we identified C10 analogues with improved potency and drug-like properties. By exploring three heterocycle spacers (oxadiazole, 1,2,3-triazole, and isoxazole) on the ring-fused thiazolo-2-pyridone scaffold, we identified two novel isoxazoles, 17h and 17j. 17h and 17j inhibited Mtb respiration and biofilm formation more potently with a broader therapeutic window, were better potentiators of INH-mediated inhibition of an INH-resistant Mtb mutant, and more effectively inhibited intracellular Mtb replication than C10. The (-)17j enantiomer showed further enhanced activity compared to its enantiomer and the 17j racemic mixture. Our potent second-generation C10 analogues offer promise for therapeutic development against drug-resistant Mtb.

SUBMITTER: Sarkar S 

PROVIDER: S-EPMC10461229 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Design, Synthesis, and Evaluation of Novel Δ<sup>2</sup>-Thiazolino 2-Pyridone Derivatives That Potentiate Isoniazid Activity in an Isoniazid-Resistant <i>Mycobacterium tuberculosis</i> Mutant.

Sarkar Souvik S   Mayer Bridwell Anne E AE   Good James A D JAD   Wang Erin R ER   McKee Samuel R SR   Valenta Joy J   Harrison Gregory A GA   Flentie Kelly N KN   Henry Frederick L FL   Wixe Torbjörn T   Demirel Peter P   Vagolu Siva K SK   Chatagnon Jonathan J   Machelart Arnaud A   Brodin Priscille P   Tønjum Tone T   Stallings Christina L CL   Almqvist Fredrik F  

Journal of medicinal chemistry 20230724 16


<i>Mycobacterium tuberculosis</i> (<i>Mtb</i>) drug resistance poses an alarming threat to global tuberculosis control. We previously reported that <b>C10</b>, a ring-fused thiazolo-2-pyridone, inhibits <i>Mtb</i> respiration, blocks biofilm formation, and restores the activity of the antibiotic isoniazid (INH) in INH-resistant <i>Mtb</i> isolates. This discovery revealed a new strategy to address INH resistance. Expanding upon this strategy, we identified C10 analogues with improved potency and  ...[more]

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