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Updated: May 26, 2026

High-Throughput Expression and Purification of Human Solute Carriers for Structural and Biochemical Studies
Published on: September 29, 2023
Genetic and epigenetic regulation of the organic cation transporter 3, SLC22A3
1Department of Bioengineering and Therapeutic Sciences, University of California San Francisco, CA 94158, USA.
Abstract:
Human organic cation transporter 3 (OCT3 and SLC22A3) mediates the uptake of many important endogenous amines and basic drugs in a variety of tissues. OCT3 is identified as one of the important risk loci for prostate cancer, and is markedly underexpressed in aggressive prostate cancers. The goal of this study was to identify genetic and epigenetic factors in the promoter region that influence the expression level of OCT3. Haplotypes that contained the common variants, g.-81G>delGA (rs60515630) (minor allele frequency 11.5% in African American) and g.-2G>A (rs555754) (minor allele frequency>30% in all ethnic groups) showed significant increases in luciferase reporter activities and exhibited stronger transcription factor-binding affinity than the haplotypes that contained the major alleles. Consistent with the reporter assays, OCT3 messenger RNA expression levels were significantly higher in Asian (P<0.001) and Caucasian (P<0.05) liver samples from individuals who were homozygous for g.-2A/A in comparison with those homozygous for the g.-2G/G allele. Studies revealed that the methylation level in the basal promoter region of OCT3 was associated with OCT3 expression level and tumorigenesis capability in various prostate cancer cell lines. The methylation level of the OCT3 promoter was higher in 62% of prostate tumor samples compared with matched normal samples. Our studies demonstrate that genetic polymorphisms in the proximal promoter region of OCT3 alter the transcription rate of the gene and may be associated with altered expression levels of OCT3 in human liver. Aberrant methylation contributes to the reduced expression of OCT3 in prostate cancer.
Insights
Genetic variants and promoter methylation influence human organic cation transporter 3 (OCT3) expression. Polymorphisms increase OCT3 activity, while aberrant methylation reduces it, impacting prostate cancer development.
Area of Science:
- Molecular biology
- Genetics
- Cancer research
Background:
- Human organic cation transporter 3 (OCT3/SLC22A3) is crucial for transporting endogenous amines and drugs.
- OCT3 is implicated as a risk locus for prostate cancer and is underexpressed in aggressive forms.
Purpose of the Study:
- To identify genetic and epigenetic factors in the OCT3 promoter region affecting its expression.
- To understand the role of these factors in prostate cancer.
Main Methods:
- Luciferase reporter assays to assess promoter activity with specific genetic variants.
- Analysis of OCT3 messenger RNA (mRNA) expression in human liver samples.
- Investigation of OCT3 promoter methylation levels in prostate cancer cell lines and patient samples.
Main Results:
- Haplotypes with common variants (g.-81G>delGA and g.-2G>A) showed increased reporter activity and transcription factor binding.
- Homozygosity for the g.-2A allele correlated with significantly higher OCT3 mRNA levels in Asian and Caucasian livers.
- Increased OCT3 promoter methylation was observed in prostate cancer cell lines and 62% of tumor samples, associated with tumorigenesis.
Conclusions:
- Genetic polymorphisms in the OCT3 promoter alter gene transcription rates and OCT3 expression levels in human liver.
- Aberrant promoter methylation contributes to reduced OCT3 expression in prostate cancer.
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