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Discovery of a potent and selective small molecule hGPR91 antagonist
Authors:Bhuniya Debnath  Umrani Dhananjay  Dave Bhavesh  Salunke Deepak  Kukreja Gagan  Gundu Jayasagar  Naykodi Minakshi  Shaikh Nadim S  Shitole Prasad  Kurhade Santosh  De Siddhartha  Majumdar Sreemita  Reddy Srinivasa B  Tambe Suhas  Shejul Yogesh  Chugh Anita  Palle Venkata P  Mookhtiar Kasim A  Cully Doris  Vacca Joseph  Chakravarty Prasun K  Nargund Ravi P  Wright Samuel D  Graziano Michael P  Singh Sheo B  Roy Sophie  Cai Tian-Quan
Affiliation:a Drug Discovery Facility, Advinus Therapeutics, Quantum Towers, Plot-9, Phase-I, Rajiv Gandhi InfoTech Park, Hinjewadi, Pune 411 057, India
b Merck Research Laboratories, PO Box 2000, Rahway, NJ 07065, USA
Abstract:GPR91, a 7TM G-Protein-Coupled Receptor, has been recently deorphanized with succinic acid as its endogenous ligand. Current literature indicates that GPR91 plays role in various pathophysiology including renal hypertension, autoimmune disease and retinal angiogenesis. Starting from a small molecule high-throughput screening hit 1 (hGPR91 IC50: 0.8 μM)—originally synthesized in Merck for Bradykinin B1 Receptor (BK1R) program, systematic structure-activity relationship study led us to discover potent and selective hGPR91 antagonists e.g. 2c, 4c, and 5g (IC50: 7-35 nM; >1000 fold selective against hGPR99, a closest related GPCR; >100 fold selective in Drug Matrix screening). This initial work also led to identification of two structurally distinct and orally bio-available lead compounds: 5g (%F: 26) and 7e (IC50: 180 nM; >100 fold selective against hGPR99; %F: 87). A rat pharmacodynamic assay was developed to characterize the antagonists in vivo using succinate induced increase in blood pressure. Using two representative antagonists, 2c and 4c, the GPR91 target engagement was subsequently demonstrated using the designed pharmacodynamic assay.
Keywords:GPR91   Succinate   hGPR91 antagonist   Structure-activity relationship   Pharmacodynamic effect
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