The Antipsychotic Dopamine 2 Receptor Antagonist Diphenylbutylpiperidines Improve Glycemia in Experimental Obesity by Inhibiting Succinyl-CoA:3-Ketoacid CoA Transferase

Author:

Tabatabaei Dakhili Seyed Amirhossein123,Greenwell Amanda A.123,Yang Kunyan123,Abou Farraj Rabih4,Saed Christina T.123,Gopal Keshav123,Chan Jordan S.F.123,Chahade Jadin J.123,Eaton Farah123,Lee Crystal123,Velázquez-Martínez Carlos A.1,Crawford Peter A.5,Glover J.N. Mark4,Al Batran Rami6,Ussher John R.123ORCID

Affiliation:

1. 1Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, Canada

2. 2Alberta Diabetes Institute, University of Alberta, Edmonton, Alberta, Canada

3. 3Cardiovascular Research Centre, University of Alberta, Edmonton, Alberta, Canada

4. 4Department of Biochemistry, University of Alberta, Edmonton, Alberta, Canada

5. 5Division of Molecular Medicine, Department of Medicine, Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, MN

6. 6Faculty of Pharmacy, University of Montreal, Montreal, Quebec, Canada

Abstract

Despite significant progress in understanding the pathogenesis of type 2 diabetes (T2D), the condition remains difficult to manage. Hence, new therapeutic options targeting unique mechanisms of action are required. We have previously observed that elevated skeletal muscle succinyl CoA:3-ketoacid CoA transferase (SCOT) activity, the rate-limiting enzyme of ketone oxidation, contributes to the hyperglycemia characterizing obesity and T2D. Moreover, we identified that the typical antipsychotic agent pimozide is a SCOT inhibitor that can alleviate obesity-induced hyperglycemia. We now extend those observations here, using computer-assisted in silico modeling and in vivo pharmacology studies that highlight SCOT as a noncanonical target shared among the diphenylbutylpiperidine (DPBP) drug class, which includes penfluridol and fluspirilene. All three DPBPs tested (pimozide, penfluridol, and fluspirilene) improved glycemia in obese mice. While the canonical target of the DPBPs is the dopamine 2 receptor, studies in obese mice demonstrated that acute or chronic treatment with a structurally unrelated antipsychotic dopamine 2 receptor antagonist, lurasidone, was devoid of glucose-lowering actions. We further observed that the DPBPs improved glycemia in a SCOT-dependent manner in skeletal muscle, suggesting that this older class of antipsychotic agents may have utility in being repurposed for the treatment of T2D.

Funder

Institute of Nutrition, Metabolism and Diabetes

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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