Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10587747 | Bioorganic & Medicinal Chemistry Letters | 2013 | 6 Pages |
Abstract
Derivatives of the lead compound N-BPE-8-CAC (1) where each CH of the biphenyl group was individually replaced by N were prepared in hopes of identifying high affinity ligands with improved aqueous solubility. Compared to 1, binding affinities of the five possible pyridinyl derivatives for the μ opioid receptor were between threefold lower to fivefold higher with the Ki of the most potent compound being 0.064 nM. Docking of 8-CAC (2) into the unliganded binding site of the mouse μ opioid receptor (pdb: 4DKL) revealed that 8-CAC and β-FNA (from 4DKL) make nearly identical interactions with the receptor. However, for 1 and the new pyridinyl derivatives 4-8, binding is not tolerated in the 8-CAC binding mode due to the steric constraints of the large N-substituents. Either an alternative binding mode or rearrangement of the protein to accommodate these modifications may account for their high binding affinity.
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Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Melissa A. VanAlstine, Mark P. Wentland, Juan Alvarez, Qing Cao, Dana J. Cohen, Brian I. Knapp, Jean M. Bidlack,