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Discovery of a phosphodiesterase 9A inhibitor as a potential hypoglycemic agent.


ABSTRACT: Phosphodiesterase 9 (PDE9) inhibitors have been studied as potential therapeutics for treatment of diabetes and Alzheimer's disease. Here we report a potent PDE9 inhibitor 3r that has an IC50 of 0.6 nM and >150-fold selectivity over other PDEs. The HepG2 cell-based assay shows that 3r inhibits the mRNA expression of phosphoenolpyruvate carboxykinase and glucose 6-phosphatase. These activities of 3r, together with the reasonable pharmacokinetic properties and no acute toxicity at 1200 mg/kg dosage, suggest its potential as a hypoglycemic agent. The crystal structure of PDE9-3r reveals significantly different conformation and hydrogen bonding pattern of 3r from those of previously published 28s. Both 3r and 28s form a hydrogen bond with Tyr424, a unique PDE9 residue (except for PDE8), but 3r shows an additional hydrogen bond with Ala452. This structure information might be useful for design of PDE9 inhibitors.

SUBMITTER: Shao YX 

PROVIDER: S-EPMC4281101 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Discovery of a phosphodiesterase 9A inhibitor as a potential hypoglycemic agent.

Shao Yong-xian YX   Huang Manna M   Cui Wenjun W   Feng Ling-Jun LJ   Wu Yinuo Y   Cai Yinghong Y   Li Zhe Z   Zhu Xinhai X   Liu Peiqing P   Wan Yiqian Y   Ke Hengming H   Luo Hai-Bin HB  

Journal of medicinal chemistry 20141208 24


Phosphodiesterase 9 (PDE9) inhibitors have been studied as potential therapeutics for treatment of diabetes and Alzheimer's disease. Here we report a potent PDE9 inhibitor 3r that has an IC50 of 0.6 nM and >150-fold selectivity over other PDEs. The HepG2 cell-based assay shows that 3r inhibits the mRNA expression of phosphoenolpyruvate carboxykinase and glucose 6-phosphatase. These activities of 3r, together with the reasonable pharmacokinetic properties and no acute toxicity at 1200 mg/kg dosag  ...[more]

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