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PMID: 12142729 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Polymorphisms in a human kidney xenobiotic transporter, OCT2, exhibit altered function.

Pharmacogenetics ·Vol. 12 ·No. 5 ·2002-07-00 ·Pages 395-405

Leabman MK, Huang CC, Kawamoto M, Johns SJ, Stryke D, Ferrin TE, DeYoung J, Taylor T, Clark AG, Herskowitz I, Giacomini KM, Pharmacogenetics of Membrane Transporters Investigators

Abstract

The completion of the Human Genome Project and the development of high-throughput polymorphism identification methods have allowed researchers to carry out full genetic analyses of many clinically relevant genes. However, few studies have combined genetic analysis with in vitro phenotyping to better understand the relationship between genetic variation and protein function. Many transporters in the kidney are thought to play key roles in defense against a variety of foreign substances. The goal of this study was to understand the relationship between variation in a gene encoding a major renal xenobiotic transporter, OCT2, and transporter function. We report a comprehensive genetic analysis and functional characterization of variants of OCT2. Twenty-eight variable sites in the OCT2 gene were identified in a collection of 247 ethnically diverse DNA samples. Eight caused non-synonymous amino acid changes, of which four were present at >/= 1% in an ethnic population. All four of these altered transporter function assayed in Xenopus laevis oocytes. Analysis of nucleotide diversity (pi) revealed a higher prevalence of synonymous (pi = 22.4 x 10-4) versus non-synonymous (pi = 2.1 x 10-4) changes in OCT2 than in other genes. In addition, the non-synonymous sites had a significant tendency to exhibit more skewed allele frequencies (more negative Tajima's D-values) compared to synonymous sites. The population-genetic analysis, together with the functional characterization, suggests that selection has acted against amino acid changes in OCT2. This selection may be due to a necessary role of OCT2 in the renal elimination of endogenous amines or xenobiotics, including environmental toxins, neurotoxic amines and therapeutic drugs.

MeSH Terms
Alleles Amino Acid Sequence Animals DNA Primers Female Genetic Variation Humans Kidney/physiology Models, Molecular Molecular Sequence Data Oocytes/physiology Organic Cation Transport Proteins/chemistry,genetics,physiology Organic Cation Transporter 2 Polymerase Chain Reaction Polymorphism, Genetic Protein Conformation Xenobiotics/pharmacokinetics Xenopus laevis
Chemicals
DNA Primers Organic Cation Transport Proteins Organic Cation Transporter 2 SLC22A2 protein, human Xenobiotics
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Leabman Maya K
Department of Biopharmaceutical Sciences, Program in Human Genetics, University of California, San Francisco, CA 94143-0443, USA.
Huang Conrad C
Kawamoto Michiko
Johns Susan J
Stryke Douglas
Ferrin Thomas E
DeYoung Joseph
Taylor Travis
Clark Andrew G
Herskowitz Ira
Giacomini Kathleen M
Pharmacogenetics of Membrane Transporters Investigators
Article Info
Journal
Pharmacogenetics
Abbr.
Pharmacogenetics
ISSN
0960-314X
Published
2002-07-00
Pages
395-405
Language
English
Region
England
NLM ID
9211735
Subset
IM
Grants
NIGMS NIH HHS · GM61390 · United States
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