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Design and Synthesis of Diazatricyclodecane Agonists of the G-Protein-Coupled Receptor 119

  作者 DAROUT ETZER; ROBINSON RALPH P; MCCLURE KIM F; CORBETT MATTHEW; LI BRYAN; SHAVNYA ANDREI; ANDREWS MELISSA P; JONES CHRISTOPHER S; LI QIFANG; MINICH MARTHA L; MASCITTI VINCENT; GUIMARAES CRISTIANO R W; MUNCHHOF MICHAEL J; BAHNCK KEVIN B; CAI CUIMAN; PRICE DAVID A; LIRAS SPIROS; BONIN PAUL D; CORNELIUS PETER; WANG RUDUAN; BAGDASARIAN VICTORIA; SOBOTA COLLEEN P; HORNBY SAM; MASTERSON VICTORIA M; JOSEPH REENA M; KALGUTKAR AMIT S; CHEN YUE  
  选自 期刊  Journal of Medicinal Chemistry;  卷期  2013年56-1;  页码  301-319  
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[摘要]A series of GPR119 agonists based on a 2,6-diazatricyclo[3.3.1.1 similar to 3,7,similar to]decane ring system is described. Also provided is a detailed account of the development of a multigram scale synthesis of the diazatricyclic ring system, which was achieved using a Hofmann-Loffler-Freytag reaction as the key step. The basis for the use of this complex framework lies in an attempt to constrain one end of the molecule in the "agonist conformation" as was previously described for 3-oxa-7-aza-bicyclo[3.3.1]nonanes. Optimization of carbamate analogues of the diazatricylic compounds led to the identification of 32i as a potent agonist of the GPR119 receptor with low unbound human liver microsomal clearance. The use of an agonist response weighted ligand lipophilic efficiency (LLE) termed AgLLE is discussed along with the issues of applying efficiency measures to agonist programs. Ultimately, solubility limited absorption and poor exposure reduced further interest in these molecules.

 
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