Rika Yamaguchi
National Institutes of Health
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Publication
Featured researches published by Rika Yamaguchi.
British Journal of Pharmacology | 2009
Ruin Moaddel; Sarangan Ravichandran; F. Bighi; Rika Yamaguchi; Irving W. Wainer
The human organic cation transporter‐1 (hOCT1) is a polyspecific transporter that plays a role in drug distribution, metabolism and excretion. Previous studies have demonstrated that hOCT1 binding can be stereoselective, but the mechanism for stereochemical recognition has not been described. The purpose of this study was to develop a pharmacophore model to describe stereoselective binding to hOCT1.
Journal of Chromatography B | 2008
Krzysztof Jozwiak; Ruin Moaddel; Sarangan Ravichandran; Anita Plazinska; Joanna Kozak; Sharvil Patel; Rika Yamaguchi; Irving W. Wainer
The chiral recognition mechanisms responsible for the enantioselective binding on the alpha3beta4 nicotinic acetylcholine receptor (alpha3 beta4 nAChR) and human organic cation transporter 1 (hOCT1) have been reviewed. The results indicate that chiral recognition on the alpha3beta4 nAChR is a process involving initial tethering of dextromethorphan and levomethorphan at hydrophobic pockets within the central lumen followed by hydrogen bonding interactions favoring dextromethorphan. The second step is the defining enantioselective step. Studies with the hOCT1 indentified four binding sites within the transporter that participated in chiral recognition. Each of the enantiomers of the compounds used in the study interacted with three of these sites, while (R)-verapamil interacted with all four. Chiral recognition arose from the conformational adjustments required to produce optimum interactions. With respect to the prevailing interaction-based models, the data suggest that chiral recognition is a dynamic process and that the static point-based models should be amended to reflect this.
Analytical Biochemistry | 2010
Ruin Moaddel; F. Bighi; Rika Yamaguchi; Sharvil Patel; Sarangan Ravichandran; Irving W. Wainer
Membranes from stably transfected cell lines that express two point mutations of the human organic cation transporter-1 (hOCT1), R488M and G465R, have been immobilized on the immobilized artificial membrane (IAM) liquid chromatographic stationary phase to form two cellular membrane affinity chromatography (CMAC) columns, CMAC(hOCT1(G465R)) and CMAC(hOCT1(R488M)). Columns were created using both stationary phases, and frontal displacement chromatography experiments were conducted using [(3)H] MMP(+) (1-methyl-4-phenylpyridinium) as the marker ligand and various displacers, including the single enantiomers of verapamil, fenoterol, and isoproterenol. The chromatographic data obtained were used to refine a previously developed pharmacophore for hOCT1.
Analytical Chemistry | 2005
Ruin Moaddel; Krzysztof Jozwiak; Rika Yamaguchi; Irving W. Wainer
Journal of Chromatography B | 2005
Ruin Moaddel; Rika Yamaguchi; P.C. Ho; Sharvil Patel; C.-P. Hsu; V. Subrahmanyam; Irving W. Wainer
Journal of Chromatography B | 2004
Ruin Moaddel; Krzysztof Jozwiak; Rika Yamaguchi; Christopher Cobello; Kevin Whittington; Tarun K. Sarkar; Sankar Basak; Irving W. Wainer
Journal of Chromatography B | 2005
Krzysztof Jozwiak; Ruin Moaddel; Rika Yamaguchi; Sarangan Ravichandran; Jack R. Collins; Irving W. Wainer
Chirality | 2005
Ruin Moaddel; Sharvil Patel; Krzysztof Jozwiak; Rika Yamaguchi; P.C. Ho; Irving W. Wainer
Journal of Medicinal Chemistry | 2004
Tarun K. Sarkar; Sankar Basak; Irving W. Wainer; Ruin Moaddel; Rika Yamaguchi; Krzysztof Jozwiak; Hui-Ting Chen; Chun-Cheng Lin
Pharmaceutical Research | 2006
Krzysztof Jozwiak; Ruin Moaddel; Rika Yamaguchi; Alexandre Maciuk; Irving W. Wainer