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January 18, 2026Human Molecular Genetics0 citations

Cardioprotective SNPs in SLC28A3 and lncRNA SLC28A3-AS1 result in transcriptional changes and alternative splicing to reduce doxorubicin cytotoxicity

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SAShipra AgrawalMDMonoj Kumar DasTKTejinder Kaur

Key Result

The SNP rs7853758 in SLC28A3 and variant rs11140490 in SLC28A3-AS1 modulate CNT3 expression and reduce doxorubicin cytotoxicity through alternative splicing.

Key Points

  • This study investigates the functional effects of SNPs in SLC28A3 and SLC28A3-AS1 on doxorubicin cardiotoxicity.
  • Conducted minigene and splicing assays to analyze SNP effects.
  • Utilized site-directed mutagenesis to evaluate alterations in RNA levels.
  • Measured doxorubicin transport and cytotoxicity.
  • Investigated the role of intronic regions in splicing mechanisms.
  • Identified SNP rs7853758 in SLC28A3 significantly regulates CNT3 expression.
  • Discovered alternative splicing of AS1 lncRNA impacts CNT3 gene expression.
  • Demonstrated that splicing mechanisms influence doxorubicin cytotoxicity outcomes.

Structured PICO

P
Population
Preclinical models (minigenes, site-directed mutagenesis, splicing assays) to study clinically associated SNPs within SLC28A3 and its antisense lncRNA
I
Intervention
Modulation of SLC28A3 and its antisense lncRNA (AS1) and introduction of specific SNPs (rs7853758, rs11140490, rs7030019)
O
Outcome
CNT3 transcript and protein expression, alternative splicing, doxorubicin transport, and cytotoxicitysurrogate

Mechanistic evidence shows that specific SNPs in SLC28A3 and its antisense lncRNA alter alternative splicing and CNT3 expression, reducing doxorubicin-induced cytotoxicity.

Abstract

Abstract Cardiotoxicity is a therapeutic challenge for anthracycline-based treatments for solid tumors and leukemia. Genome-wide association studies have revealed that single nucleotide polymorphisms in the SLC28A3 locus (encoding Concentrative Nucleoside Transporter 3, CNT3) are significantly associated with reduced doxorubicin-induced cardiotoxicity. However, the mechanistic understanding of the functional effects of these genomic variants is lacking. We designed studies focused on clinically associated SNPs within SLC28A3 using minigenes, site-directed mutagenesis, splicing assays, modulation of SLC28A3 and its antisense long noncoding RNA (lncRNA, AS1), and doxorubicin transport and cytotoxicity measurements to gain more insight. We demonstrated that the cardioprotective synonymous SNP rs7853758 in the Ex14 coding region of SLC28A3 and the variant rs11140490 in Ex1 of its antisense lncRNA (SLC28A3-AS1) have functional consequences in regulating CNT3 transcript and protein expression using alterations in RNA levels and alternative splicing. Additionally, the deep intronic region of Int13, which harbors the SNP rs7030019, is critical for the splicing of CNT3 precursor mRNA at Ex13–14. Furthermore, we identified alternatively spliced variants of the AS1 lncRNA that differentially regulate CNT3 gene expression, doxorubicin transport, and cytotoxicity. Together, these findings suggest that antisense and splicing mechanisms may be exploited to modulate CNT3 function to reduce doxorubicin cytotoxicity, enabling the development of predictive biomarkers and chemotherapeutic management of anthracycline toxicities.

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Cite This Study

Agrawal et al. (2026) studied this question. The SNP rs7853758 in SLC28A3 and variant rs11140490 in SLC28A3-AS1 modulate CNT3 expression and reduce doxorubicin cytotoxicity through alternative splicing.

synapsesocial.com/papers/696c7817eb60fb80d139654ehttps://doi.org/10.1093/hmg/ddag002
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