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Electron-donating para-methoxy converts a benzamide-isoquinoline derivative into a highly Sigma-2 receptor selective ligand
Authors:Hajipour Abdol R  Guo Lian-Wang  Pal Arindam  Mavlyutov Timur  Ruoho Arnold E
Affiliation:aDepartment of Neuroscience, University of Wisconsin School of Medicine and Public Health, 1300 University Ave., Madison, WI 53706, USA;bPharmaceutical Research Laboratory, College of Chemistry, Isfahan University of Technology, Isfahan 84156, Islamic Republic of Iran
Abstract:The sigma-2 (σ2) receptor has been suggested to be a promising target for pharmacological interventions to curb tumor progression. Development of σ2-specific ligands, however, has been hindered by lack of understanding of molecular determinants that underlie selective ligand-σ2 interactions. Here we have explored effects of electron donating and withdrawing groups on ligand selectivity for the σ2 versus σ1 receptor using new benzamide-isoquinoline derivatives. The electron-donating methoxy group increased but the electron-withdrawing nitro group decreased σ2 affinity. In particular, an extra methoxy added to the para-position (5e) of the benzamide phenyl ring of 5f dramatically improved (631 fold) the σ2 selectivity relative to the σ1 receptor. This para-position provided a sensitive site for effective manipulation of the sigma receptor subtype selectivity using either the methoxy or nitro substituent. Our study provides a useful guide for further improving the σ2-over-σ1 selectivity of new ligands.
Keywords:Abbreviations: RT, room temperature   DCC, dicyclohexylcarbodiimide   THF, tetrahydrofuran   Ar, aromatic ring   OMe, methoxy   EtOH, ethanol   DTG, 1,3-di(2-tolyl)guanidine   [125I]-IAF, 1-N-(2&prime  ,6&prime  -dimethyl-morpholino)-3-(4-azido-3-[125I]iodo-phenyl propane
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