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A DNA Aptamer as a Chemical Tool to Modulate MEX3C-Mediated mRNA Destabilization.

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ACS applied bio materials 📖 저널 OA 15.6% 2022: 1/1 OA 2024: 1/4 OA 2025: 1/16 OA 2026: 7/43 OA 2022~2026 2026 Vol.9(3) p. 1643-1654
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Li T, Qin J, Huang Z, Guo L, Liu X, Zhang W, Zhang Y, Wei J, Yang K, Chen W, Liu B, Wang Z, Pan Y, Wang H, Wei Y

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Targeting RNA-binding proteins (RBPs) that control mRNA turnover presents a promising avenue for modulating gene expression and accessing otherwise "undruggable" intracellular targets.

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APA Li T, Qin J, et al. (2026). A DNA Aptamer as a Chemical Tool to Modulate MEX3C-Mediated mRNA Destabilization.. ACS applied bio materials, 9(3), 1643-1654. https://doi.org/10.1021/acsabm.5c02157
MLA Li T, et al.. "A DNA Aptamer as a Chemical Tool to Modulate MEX3C-Mediated mRNA Destabilization.." ACS applied bio materials, vol. 9, no. 3, 2026, pp. 1643-1654.
PMID 41518674 ↗

Abstract

Targeting RNA-binding proteins (RBPs) that control mRNA turnover presents a promising avenue for modulating gene expression and accessing otherwise "undruggable" intracellular targets. MEX3C is a tumor- and tissue-specific RBP that facilitates transcript destabilization by recruiting the CCR4-NOT deadenylation complex; however, selective tools to perturb MEX3C are lacking. Here, we report the development of a high-affinity and specific DNA aptamer through iterative Blocker-SELEX selection and sequence optimization. The resulting aptamer, MRiApt, binds the KH1 domain of MEX3C with nanomolar affinity and competitively inhibits RNA binding while sparing the homologous KH2 domain. A chemically stabilized derivative, MRiApt-PT-stem, exhibits enhanced stability and efficient intracellular uptake and effectively antagonizes the MEX3C-dependent repression of HLA-A2 transcripts, restoring HLA-A2 expression and thereby improving tumor cell recognition by T cells. Analysis of TCGA data revealed that high-MEX3C expression was significantly associated with poor prognosis in liver hepatocellular carcinoma (LIHC), underscoring the clinical relevance of perturbing MEX3C. Together, these findings establish MRiApt-PT-stem as a chemical probe to dissect and modulate MEX3C-mediated post-transcriptional regulation, providing a foundation for future approaches in transcriptome modulation and therapeutic targeting of RBPs.

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