Genomic dissection and mutation-specific target discovery for breast cancer PIK3CA hotspot mutations

Adam X Miranda1, Justin Kemp1, Brad A Davidson1

  • 1Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, USA.

BMC Genomics
|May 27, 2024
PubMed
Abstract

Insights

This study reveals distinct molecular differences between PIK3CA mutations E545K and H1047R using functional genomics. These findings identify AREG as a potential therapeutic target specific to the E545K mutation.

Area of Science:

  • Genomics
  • Cancer Biology
  • Molecular Oncology

Background:

  • High-throughput genomics and targeted therapies offer potential for cancer mutation targeting.
  • Current therapies often treat all mutations within a gene similarly, irrespective of specific codon or phenotype.

Purpose of the Study:

  • To develop a functional genomic workflow to differentiate targetable differences between PIK3CA hotspot mutations (E545K and H1047R).
  • To identify mutation-specific gene pathway vulnerabilities and potential therapeutic targets.

Main Methods:

  • Utilized an isogenic cell line panel with distinct PIK3CA mutations (E545K, H1047R).
  • Performed RNA-seq and ATAC-seq to identify transcriptomic and epigenomic differences.
  • Conducted CRISPR knockout screens to uncover mutation-specific vulnerabilities.

Main Results:

  • Identified distinct transcriptomic and epigenomic profiles for E545K and H1047R PIK3CA mutations.
  • Discovered AREG as a preferential target for the E545K mutation.
  • Validated AREG targeting through in vitro analysis and patient databases.

Conclusions:

  • PIK3CA hotspot mutations exhibit distinct genomic regulation and downstream signaling effects.
  • Demonstrated the potential to uncover mutation-specific molecular targets like AREG for therapeutic development.
  • Presented an integrative strategy for identifying mutation-specific targets in isogenic systems for various oncogenic mutations.