Related Experiment Video
Updated: Jul 31, 2026

Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)
Published on: August 21, 2016
Functional analysis of genetic variants in the human concentrative nucleoside transporter 3 (CNT3; SLC28A3)
I Badagnani1, W Chan, R A Castro
1Department of Biopharmaceutical Sciences, University of California, San Francisco, CA 94143-0446, USA.
Abstract:
The human concentrative nucleoside transporter, CNT3 (SLC28A3), plays an important role in mediating the cellular entry of a broad array of physiological nucleosides and synthetic anticancer nucleoside analog drugs. As a first step toward understanding the genetic basis for interindividual differences in the disposition and response to antileukemic nucleoside analogs, we examined the genetic and functional diversity of CNT3. In all, 56 variable sites in the exons and flanking intronic region of SLC28A3 were identified in a collection of 270 DNA samples from US populations (80 African-Americans, 80 European-Americans, 60 Asian-Americans, and 50 Mexican-Americans). Of the 16 coding region variants, 12 had not been previously reported. Also, 10 resulted in amino-acid changes and three of these had total allele frequencies of >/=1%. Nucleotide diversity (pi) at nonsynonymous and synonymous sites was estimated to be 1.81 x 10(4) and 18.13 x 10(4), respectively, suggesting that SLC28A3 is under negative selection. All nonsynonymous variants, constructed by site-directed mutagenesis and expressed in Xenopus laevis oocytes, transported purine and pyrimidine model substrates, except for c. 1099G>A (p. Gly367Arg). This rare variant alters an evolutionarily conserved site in the putative substrate recognition domain of CNT3. The presence of three additional evolutionarily conserved glycine residues in the vicinity of p. Gly367Arg that are also conserved in human paralogs suggest that these glycine residues are critical in the function of the concentrative nucleoside transporter family. The genetic analysis and functional characterization of CNT3 variants suggest that this transporter does not tolerate nonsynonymous changes and is important for human fitness.
Insights
The human concentrative nucleoside transporter 3 (CNT3) exhibits genetic diversity, with most variants not affecting function. A rare variant (p. Gly367Arg) impairs CNT3 transporter activity, highlighting its importance for human health.
Area of Science:
- Pharmacogenomics
- Molecular biology
- Human genetics
Background:
- The human concentrative nucleoside transporter 3 (CNT3), encoded by SLC28A3, is crucial for cellular uptake of nucleosides and anticancer drugs.
- Understanding genetic variations in CNT3 is essential for personalized medicine, particularly for antileukemic nucleoside analog therapies.
Purpose of the Study:
- To investigate the genetic and functional diversity of the human CNT3 transporter (SLC28A3).
- To identify genetic variants influencing CNT3 function and their implications for drug response.
Main Methods:
- Genetic analysis of SLC28A3 in diverse US populations (African-Americans, European-Americans, Asian-Americans, Mexican-Americans).
- Identification and characterization of coding region variants using DNA sequencing.
- Functional assessment of CNT3 variants expressed in Xenopus laevis oocytes.
Main Results:
- 56 variable sites in SLC28A3 were identified, with 12 novel coding region variants.
- Three nonsynonymous variants had allele frequencies >/=1%.
- Most variants transported substrates, but the rare c. 1099G>A (p. Gly367Arg) variant abolished transport, affecting a conserved residue critical for CNT3 function.
Conclusions:
- The human CNT3 transporter shows limited tolerance for nonsynonymous genetic changes, indicating its critical role in human physiology.
- The p. Gly367Arg variant highlights the functional importance of conserved glycine residues in the nucleoside transporter family.
- Genetic variations in CNT3 may influence individual responses to nucleoside-based therapies.
More Related Videos
09:34Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
07:15Determining the Likelihood of Variant Pathogenicity Using Amino Acid-level Signal-to-Noise Analysis of Genetic Variation
Published on: January 16, 2019
Related Concept Videos
The Significance of Membrane Transport
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
Comparing Copy Number Variations and SNPs
Copy number variations or CNVs are the structural variations that cover more than 1kb of DNA sequence. The single nucleotide polymorphism (SNP), on the other hand, is a single nucleotide change or a point mutation that is found in more than 1%...
Principles of Pharmacogenetics: Types of Genetic Variants
Pharmacogenetic Phenotypes: Alterations in Pharmacokinetics, Drug Targets and Biologic Milieu
Pharmacogenetics of Phase II Enzymes: N-acetyltransferase, Thiopurine S-methyltransferase, UDP-glucuronosyltransferase
Pharmacogenetics of Drug Transporters: P-Glycoprotein and Solute Carrier Transporters