Assessment of TROP2, CEACAM5 and DLL3 in metastatic prostate cancer: Expression landscape and molecular correlates

Azra Ajkunic1, Erolcan Sayar1, Martine P Roudier2

  • 1Division of Human Biology, Fred Hutchinson Cancer Center, Seattle, WA, USA.

PubMed

Insights

New cell surface targets like TROP2, DLL3, and CEACAM5 are crucial for treating advanced prostate cancer (CRPC) when PSMA is lost. Their expression is linked to specific CRPC subtypes and genetic alterations.

Area of Science:

  • Oncology
  • Molecular Biology
  • Precision Medicine

Background:

  • Targeting cell surface proteins is key for precision oncology.
  • Prostate-specific membrane antigen (PSMA) is a target in castration-resistant prostate cancer (CRPC), but its expression can be lost.
  • New cell surface targets are needed for CRPC treatment.

Purpose of the Study:

  • To analyze the expression patterns of TROP2, DLL3, and CEACAM5 in CRPC.
  • To understand the relationship between genomic alterations, epigenetic states, and the expression of these targets.
  • To identify potential new therapeutic targets for CRPC.

Main Methods:

  • Comprehensive analysis of CRPC samples from a rapid autopsy cohort.
  • Assessment of TROP2, DLL3, and CEACAM5 expression heterogeneity and co-expression.
  • Correlation analysis with genomic alterations (AR, RB1) and epigenetic states (H3K27me3).

Main Results:

  • DLL3 and CEACAM5 are highly expressed in neuroendocrine prostate cancer (NEPC).
  • TROP2 is expressed across CRPC subtypes, excluding NEPC.
  • AR alterations correlate with higher PSMA and TROP2 expression; RB1 alterations correlate with lower expression.
  • Epigenetic states, specifically H3K27me3, are tightly linked to TROP2, DLL3, and CEACAM5 protein expression.

Conclusions:

  • TROP2, DLL3, and CEACAM5 represent promising cell surface targets for CRPC therapy.
  • Understanding their expression patterns and regulatory mechanisms is vital for developing new targeted agents.
  • These findings support the clinical development of therapies targeting these proteins in CRPC.