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Updated: Jan 27, 2026

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
Published on: September 20, 2018
Sodium-coupled monocarboxylate transporter is a target of epigenetic repression in cervical cancer
Jennifer Hernández-Juárez1, Orlando Vargas-Sierra2, Luis A Herrera3
1Department of Genetics and Molecular Biology, Centre for Research and Advanced Studies of the National Polytechnic Institute, Mexico City 07360, Mexico.
Abstract:
The SLC5A8 gene encodes Na monocarboxylate transporter 1, which is epigenetically inactivated in various tumour types. This has been attributed to the fact that it prevents the entry of histone deacetylase (HDAC) inhibitors and favours the metabolic reprogramming of neoplastic cells. Nevertheless, its expression and regulation in cervical cancer (CC) have not been elucidated to date. The aim of the present study was to investigate whether SLC5A8 expression is silenced in CC and if epigenetic mechanisms are involved in its regulation. Using RNA and DNA from human CC cell lines and tumour tissues from patients with CC, the expression of SLC5A8 was analysed by reverse transcription polymerase chain reaction and the methylation status of its CpG island (CGI) by bisulphite‑modified sequencing. Additionally, SLC5A8 reactivation was examined in the CC cell lines following treatment with DNA methylation (5‑aza‑2'‑deoxycytidine) and HDAC inhibitors (trichostatin A and pyruvate). All the CC cell lines and a range of tumour tissues (65.5%) exhibited complete or partial loss of SLC5A8 transcription. The bisulphite‑sequencing revealed that hypermethylation of the CGI within SLC5A8 first exon was associated with its downregulation in the majority of cases. The transporter expression was restored in the CC cell lines following exposure to 5‑aza‑2'‑deoxycytidine alone, or in combination with trichostatin A or pyruvate, suggesting that DNA methylation and histone deacetylation contribute to its inhibition in a cell line‑dependent manner. Together, the results of the present study demonstrate the key role of DNA hypermethylation in the repression of SLC5A8 in CC, as well as the involvement of histone deacetylation, at least partially. This allows for research focused on the potential function of SLC5A8 as a tumour suppressor in CC, and as a biomarker or therapeutic target in this malignancy.
Insights
The SLC5A8 gene, crucial for preventing tumor growth, is silenced in most cervical cancers due to DNA hypermethylation and histone deacetylation. Reactivating SLC5A8 offers potential as a therapeutic target.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- The SLC5A8 gene, encoding Na monocarboxylate transporter 1, is epigenetically silenced in various cancers.
- Its role and regulation in cervical cancer (CC) remain largely unelucidated.
- SLC5A8 inactivation may promote neoplastic cell metabolic reprogramming.
Purpose of the Study:
- To investigate SLC5A8 expression and epigenetic regulation in cervical cancer.
- To determine if SLC5A8 is silenced in CC and if DNA methylation or histone deacetylation is involved.
Main Methods:
- Analysis of SLC5A8 expression using reverse transcription polymerase chain reaction in CC cell lines and patient tissues.
- Assessment of CpG island methylation status via bisulphite sequencing.
- Evaluation of SLC5A8 reactivation following treatment with DNA methylation and HDAC inhibitors.
Main Results:
- Complete or partial loss of SLC5A8 transcription was observed in all CC cell lines and 65.5% of tumor tissues.
- Hypermethylation of the SLC5A8 first exon CpG island correlated with its downregulation.
- SLC5A8 expression was restored by 5-aza-2'-deoxycytidine, alone or with trichostatin A or pyruvate.
Conclusions:
- DNA hypermethylation is a key mechanism repressing SLC5A8 in cervical cancer.
- Histone deacetylation also contributes to SLC5A8 inhibition, depending on the cell line.
- SLC5A8 warrants further investigation as a potential tumor suppressor, biomarker, or therapeutic target in CC.
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