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Novel strategy for activating gene expression through triplex DNA formation targeting epigenetically suppressed genes. | LitMetric

AI Article Synopsis

  • Triplex DNA formation is a promising technique for targeting genes, but has limitations in its original forming sequences.
  • Researchers developed a new molecule, guanidino-dN, which effectively recognizes methylated CG base pairs, allowing for enhanced triplex DNA formation.
  • This method successfully increased the expression of the RASSF1A gene in breast cancer cells, leading to suppressed cell growth and changes in gene expression related to cancer survival and apoptosis.

Article Abstract

Triplex DNA formation is a useful genomic targeting tool that is expected to have a wide range of applications, including the antigene method; however, there are fundamental limitations in its forming sequence. We recently extended the triplex DNA-forming sequence to methylated DNA sequences containing CG base pairs by developing guanidino-dN, which is capable of recognizing a CG base pair with high affinity. We herein investigated the effect of triplex DNA formation using TFOs with guanidino-dN on methylated DNA sequences at the promoter of the RASSF1A gene, whose expression is epigenetically suppressed by DNA methylation in MCF-7 cells, on gene expression. Interestingly, triplex DNA formation increased the expression of the RASSF1A gene at the transcript and protein levels. Furthermore, RASSF1A-activated MCF-7 cells exhibited cell growth suppressing activity. Changes in the expression of various genes associated with the promotion of apoptosis and breast cancer survival accompanied the activation of RASSF1A in cells exhibited antiproliferative activity. These results suggest the potential of increases in gene expression through triplex DNA formation as a new genomic targeting tool.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11353075PMC
http://dx.doi.org/10.1039/d4cb00134fDOI Listing

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