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Structure-activity relationships of furazano[3,4-b]pyrazines as mitochondrial uncouplers.


ABSTRACT: Chemical mitochondrial uncouplers are lipophilic weak acids that transport protons into the mitochondrial matrix via a pathway that is independent of ATP synthase, thereby uncoupling nutrient oxidation from ATP production. These uncouplers have potential for the treatment of diseases such as obesity, Parkinson's disease, and aging. We have previously identified a novel mitochondrial protonophore, named BAM15, which stimulates mitochondrial respiration across a broad dosing range compared to carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP). Herein, we report our investigations on the structure-activity relationship profile of BAM15. Our studies demonstrate the importance of the furazan, pyrazine, and aniline rings as well as pKa in maintaining its effective protonophore activity.

SUBMITTER: Kenwood BM 

PROVIDER: S-EPMC6734931 | biostudies-literature | 2015 Nov

REPOSITORIES: biostudies-literature

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Structure-activity relationships of furazano[3,4-b]pyrazines as mitochondrial uncouplers.

Kenwood Brandon M BM   Calderone Joseph A JA   Taddeo Evan P EP   Hoehn Kyle L KL   Santos Webster L WL  

Bioorganic & medicinal chemistry letters 20150616 21


Chemical mitochondrial uncouplers are lipophilic weak acids that transport protons into the mitochondrial matrix via a pathway that is independent of ATP synthase, thereby uncoupling nutrient oxidation from ATP production. These uncouplers have potential for the treatment of diseases such as obesity, Parkinson's disease, and aging. We have previously identified a novel mitochondrial protonophore, named BAM15, which stimulates mitochondrial respiration across a broad dosing range compared to carb  ...[more]

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