Targeting the production of oncogenic microRNAs with multimodal synthetic small molecules

Duc Duy Vo1, Cathy Staedel, Laura Zehnacker

  • 1Institut de Chimie de Nice UMR7272 CNRS, University of Nice , Parc Valrose, 06100 Nice, France.

ACS Chemical Biology
|December 24, 2013
PubMed

Insights

New small molecules inhibit oncogenic microRNAs (miRNAs) like miR-372 and miR-373, crucial in gastric cancer. These compounds target miRNA production, offering potential new anticancer therapies.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • MicroRNAs (miRNAs) are small RNA molecules regulating gene expression post-transcriptionally.
  • Aberrant miRNA expression is linked to human cancer initiation and progression.
  • Inhibiting oncogenic miRNAs presents a potential therapeutic strategy for various cancers.

Purpose of the Study:

  • To design, synthesize, and evaluate novel small-molecule RNA ligands targeting oncogenic miRNA production.
  • To focus on miR-372 and miR-373, implicated in gastric cancer tumorigenesis.
  • To develop RNA ligands with enhanced affinity and selectivity for pre-miRNAs.

Main Methods:

  • Conjugation of neomycin with natural and artificial nucleobases to create RNA ligands.
  • Synthesis and biological evaluation of the novel RNA ligands.
  • Assessment of inhibition of pre-miR-372 and pre-miR-373 processing by Dicer.
  • Evaluation of anti-proliferative activity against gastric cancer cells.

Main Results:

  • Developed new small-molecule RNA ligands by conjugating neomycin and nucleobases.
  • Demonstrated that these ligands inhibit the production of oncogenic miR-372 and miR-373.
  • Showed that some compounds possess anti-proliferative activity against gastric cancer cells, linked to reduced miRNA production.
  • Confirmed inhibition of Dicer processing of pre-miRNAs by the designed ligands.

Conclusions:

  • Novel small molecules effectively inhibit oncogenic miRNA production by targeting pre-miRNAs.
  • These compounds demonstrate anti-proliferative effects on gastric cancer cells.
  • The developed RNA ligands represent promising tools for anticancer therapeutic strategies and miRNA pathway research.

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