Publication | Open Access
<scp>m6A</scp> methyltransferase <scp>Wilms' tumor 1‐associated protein</scp> facilitates cell proliferation and cisplatin resistance in <scp>NK</scp>/T cell lymphoma by regulating <scp>dual‐specificity phosphatases 6</scp> expression via <scp>m6A RNA</scp> methylation
46
Citations
19
References
2020
Year
Epigenetic ChangeImmunologyNktcl DevelopmentImmunotherapyCancer BiologyEpigeneticsTumor BiologyNormal Nk CellsTumor 1‐AssociatedCancer Cell BiologyCancer ResearchGene ExpressionEpigenetic RegulationCisplatin ResistanceCell BiologyTumor MicroenvironmentCancer ImmunosurveillanceNatural SciencesEpigenomicsCancer GenomicsImmune Checkpoint InhibitorTumor SuppressorSystems BiologyMedicineNktcl Treatment
Nasal-type natural killer/T-cell lymphoma (NKTCL) is an aggressive malignancy with poor survival outcomes that is relatively resistant to chemotherapy. N6-Methyladenosine (m6A) modification, the most prevalent modification of eukaryotic messenger RNA, is involved in the progression of various tumors. However, it is unclear whether it has a physiological role in NKTCL development. To address this question, we probed its function and molecular mechanisms in NKTCL. Initially, we demonstrated that Wilms' tumor 1-associated protein (WTAP), a major RNA N6-adenosine methyltransferase, was obviously upregulated in human NKTCL cell lines (YTS and SNK-6 cells), compared with normal NK cells. Functionally, depletion of WTAP noticeably repressed proliferation and facilitated apoptosis in YTS and SNK-6 cells. Moreover, intervention of WTAP evidently prohibited NKTCL cell chemotherapy resistance to cisplatin, as reflected by a lower inhibition of cell viability and decreased expression of drug resistance-associated protein expression MRP-1 and P-gp in YTS and SNK-6 cells. With regard to the mechanism, we revealed that WTAP enhanced dual-specificity phosphatases 6 (DUSP6) expression by increasing m6A levels of DUSP6 mRNA transcript, leading to oncogenic functions in NKTCL. Interestingly, WTAP contributed to the progression and chemotherapy sensitivity of NKTCL by stabilizing DUSP6 mRNA in an m6A-dependent manner. Taken together, these findings uncovered a critical function for WTAP-guided m6A methylation and identified DUSP6 as an important target of m6A modification in the regulation of chemotherapy resistance in NKTCL oncogenesis. This study highlights WTAP as a potential therapeutic target of NKTCL treatment.
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