Prostate-specific Membrane Antigen Heterogeneity and DNA Repair Defects in Prostate Cancer

Alec Paschalis1, Beshara Sheehan2, Ruth Riisnaes2

  • 1The Institute of Cancer Research, Sutton, UK; The Royal Marsden NHS Foundation Trust, Sutton, UK.

European Urology
|July 27, 2019
PubMed
Abstract

Insights

Prostate-specific membrane antigen (PSMA) expression varies greatly in prostate cancer (PC), impacting theranostic utility. Cancers with DNA damage repair defects show higher PSMA, suggesting potential for targeted therapies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Prostate-specific membrane antigen (PSMA) expression in prostate cancer (PC) holds significant theranostic potential.
  • Understanding PSMA expression variability and its association with DNA damage repair (DDR) is crucial for optimizing PC treatment strategies.

Purpose of the Study:

  • To investigate the expression patterns of membranous PSMA (mPSMA) in metastatic castration-resistant PC (mCRPC).
  • To correlate mPSMA expression with DNA damage repair (DDR) status and clinical outcomes.
  • To assess the heterogeneity of mPSMA expression within patients and across different disease stages.

Main Methods:

  • Immunohistochemical scoring of mPSMA expression in diagnostic and mCRPC biopsies.
  • Next-generation sequencing (NGS) to analyze DNA and transcriptomes for DDR gene mutations and expression.
  • Statistical correlation analyses, survival estimations (Kaplan-Meier), and heterogeneity quantification (Shannon's diversity index).

Main Results:

  • mPSMA expression at diagnosis correlated with higher Gleason grade and worse overall survival.
  • mPSMA levels increased from castration-sensitive PC (CSPC) to mCRPC, but significant heterogeneity and undetectable mPSMA were observed in a substantial proportion of cases.
  • Tumors with DDR defects, particularly those with BRCA2 and ATM aberrations, exhibited significantly higher mPSMA expression compared to molecularly unselected mCRPC.

Conclusions:

  • Membranous PSMA expression in PC is highly variable, presenting challenges for PSMA-targeted therapies.
  • Defective DNA damage repair pathways are associated with increased mPSMA expression, identifying potential predictive biomarkers for PSMA-targeted treatment response.