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Synthesis and Pharmacological Characterization of Novel trans-Cyclopropylmethyl-Linked Bivalent Ligands That Exhibit Selectivity and Allosteric Pharmacology at the Dopamine D3 Receptor (D3R).


ABSTRACT: The development of bitopic ligands directed toward D2-like receptors has proven to be of particular interest to improve the selectivity and/or affinity of these ligands and as an approach to modulate and bias their efficacies. The structural similarities between dopamine D3 receptor (D3R)-selective molecules that display bitopic or allosteric pharmacology and those that are simply competitive antagonists are subtle and intriguing. Herein we synthesized a series of molecules in which the primary and secondary pharmacophores were derived from the D3R-selective antagonists SB269,652 (1) and SB277011A (2) whose structural similarity and pharmacological disparity provided the perfect templates for SAR investigation. Incorporating a trans-cyclopropylmethyl linker between pharmacophores and manipulating linker length resulted in the identification of two bivalent noncompetitive D3R-selective antagonists, 18a and 25a, which further delineates SAR associated with allosterism at D3R and provides leads toward novel drug development.

SUBMITTER: Kumar V 

PROVIDER: S-EPMC5325712 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Synthesis and Pharmacological Characterization of Novel trans-Cyclopropylmethyl-Linked Bivalent Ligands That Exhibit Selectivity and Allosteric Pharmacology at the Dopamine D<sub>3</sub> Receptor (D<sub>3</sub>R).

Kumar Vivek V   Moritz Amy E AE   Keck Thomas M TM   Bonifazi Alessandro A   Ellenberger Michael P MP   Sibley Christopher D CD   Free R Benjamin RB   Shi Lei L   Lane J Robert JR   Sibley David R DR   Newman Amy Hauck AH  

Journal of medicinal chemistry 20170210 4


The development of bitopic ligands directed toward D<sub>2</sub>-like receptors has proven to be of particular interest to improve the selectivity and/or affinity of these ligands and as an approach to modulate and bias their efficacies. The structural similarities between dopamine D<sub>3</sub> receptor (D<sub>3</sub>R)-selective molecules that display bitopic or allosteric pharmacology and those that are simply competitive antagonists are subtle and intriguing. Herein we synthesized a series o  ...[more]

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