AI Article Synopsis

  • Researchers have found that the Hippo pathway is crucial for regulating the expression of ESR1, which encodes the ERα receptor.
  • YAP/TAZ are proteins that normally help activate gene transcription, but their activity is inhibited by the Hippo pathway's kinase LATS.
  • The introduction of a LATS inhibitor, VT02956, successfully reduces ESR1 levels and hampers the growth of ER-positive breast cancer cells, indicating that targeting the Hippo pathway may provide new treatment options for endocrine-resistant breast cancers.

Article Abstract

Extensive knowledge has been gained on the transcription network controlled by ERα, however, the mechanism underlying ESR1 (encoding ERα) expression is less understood. We recently discovered that the Hippo pathway is required for the proper expression of ESR1. YAP/TAZ are transcription coactivators that are phosphorylated and inhibited by the Hippo pathway kinase LATS. Here we delineated the molecular mechanisms underlying ESR1 transcription repression by the Hippo pathway. Mechanistically, YAP binds to TEAD to increase local chromatin accessibility to stimulate transcription of nearby genes. Among the YAP target genes, Vestigial-Like Protein 3 (VGLL3) competes with YAP/TAZ for binding to TEAD transcription factor and recruits the NCOR2/SMRT repressor to the super-enhancer of ESR1 gene, leading to epigenetic alteration and transcriptional silencing. We developed a potent LATS inhibitor VT02956. Targeting the Hippo pathway by VT02956 represses ESR1 expression and inhibits the growth of ER breast cancer cells as well as patient-derived tumour organoids. Moreover, histone deacetylase inhibitors, such as Entinostat, induce VGLL3 expression to inhibit ER breast cancer cells. Our study suggests LATS as unexpected cancer therapeutic targets, especially for endocrine-resistant breast cancers.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8881512PMC
http://dx.doi.org/10.1038/s41467-022-28691-0DOI Listing

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