Analysis of evolutionary conserved amino acid residues of hOCT1 by

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Analysis of evolutionary conserved amino acid residues of hOCT1 by
Role of SLC22A1 polymorphic variants in drug disposition, therapeutic responses, and drug–drug interactions
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Role of SLC22A1 polymorphic variants in drug disposition, therapeutic responses, and drug–drug interactions
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Amino acids in transmembrane helix 1 confer major functional differences between human and mouse orthologs of the polyspecific membrane transporter OCT1 - ScienceDirect
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Cloning and Functional Expression of a Human Liver Organic Cation Transporter
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Amino acids in transmembrane helix 1 confer major functional differences between human and mouse orthologs of the polyspecific membrane transporter OCT1 - ScienceDirect
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Drug transporter pharmacogenetics in nucleoside-based therapies
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Mutation in Transmembrane Domain 8 of Human Urate Transporter 1 Disrupts Uric Acid Recognition and Transport
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Investigation of pathogenic germline variants in gastric cancer and development of “GasCanBase” database - Hossain - Cancer Reports - Wiley Online Library
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Insight into Evolution and Conservation Patterns of B1-Subfamily Members of GPCR
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Amino acids in transmembrane helix 1 confer major functional differences between human and mouse orthologs of the polyspecific membrane transporter OCT1 - ScienceDirect
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