Targeting CPSF73, the mRNA 3' end processing endonuclease, moves cancer cells away from the mesenchymal state

Marzieh Naseri1, Huiyun Liu1, Luyang Wang2

  • 1Department of Developmental, Molecular, and Chemical Biology, Tufts University School of Medicine, Boston, MA, United States.

Frontiers in Immunology
|August 20, 2026
PubMed
Abstract

Insights

Inhibiting CPSF73 activity slows cancer growth and reverses epithelial-mesenchymal transition (EMT) by altering alternative polyadenylation (APA). This suggests APA modulation is a potential therapeutic strategy against cancer metastasis.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Genomics

Background:

  • Metastasis is a major cause of cancer mortality, often driven by the epithelial-mesenchymal transition (EMT).
  • Alternative polyadenylation (APA) generates mRNA variants, and 3'UTR shortening in cancer can increase oncogene expression.
  • The role of APA in regulating EMT is not well understood, despite CPSF73's association with poor cancer prognosis.

Purpose of the Study:

  • To investigate the role of APA in regulating EMT.
  • To examine the effects of CPSF73 inhibition on cancer cell proliferation and EMT.
  • To identify APA changes associated with EMT reversal.

Main Methods:

  • Utilized JTE-607, a small-molecule inhibitor of CPSF73, across four cancer cell lines (MDA-MB-231, MCF7, A549, HepG2).
  • Performed global APA profiling and differential gene expression analysis in MDA-MB-231 cells.
  • Employed antisense oligonucleotides to block specific poly(A) sites (PASs) to study EMT reversal.

Main Results:

  • CPSF73 inhibition reduced cancer cell growth and induced EMT reversal in all tested cell lines.
  • Global APA profiling revealed widespread 3'UTR lengthening and suppression of intronic PASs upon CPSF73 inhibition.
  • Blocking the proximal PAS of AKT2 led to EMT reversal, reduced AKT2 protein, altered EMT markers, and impaired cell invasion.

Conclusions:

  • APA-mediated 3'UTR lengthening in EMT-related genes is a key mechanism attenuating the EMT phenotype.
  • Targeting APA changes presents a promising therapeutic strategy for suppressing cancer metastasis.
  • This study highlights a significant link between APA and EMT, with potential broad therapeutic applications.

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