CHD1 and SPOP synergistically protect prostate epithelial cells from DNA damage

Yini Zhu1,2, Jiling Wen1,3, Gang Huang1,3

  • 1Department of Biological Sciences, Boler-Parseghian Center for Rare and Neglected Diseases, Harper Cancer Research Institute, University of Notre Dame, Notre Dame, Indiana, USA.

The Prostate
|October 6, 2020
PubMed
Abstract

Insights

Speckle-type POZ protein (SPOP) and chromodomain helicase DNA-binding protein 1 (CHD1) mutations cooperate to promote DNA repair in prostate cancer. This finding suggests that prostate cancer subtypes with SPOP/CHD1 alterations may respond to DNA-damaging agents.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • A specific prostate cancer (PCa) subtype is defined by SPOP mutations and CHD1 deletions.
  • This PCa subtype exhibits high genomic instability and is mutually exclusive with ETS rearrangements.
  • Previous research suggests SPOP or CHD1 deficiency alone causes minor prostate abnormalities and impacts DNA damage response (DDR).

Purpose of the Study:

  • To investigate the synergistic role of CHD1 and SPOP in suppressing prostate tumorigenesis and maintaining DNA damage response.
  • To determine if combined SPOP and CHD1 alterations contribute to prostate cancer development and progression.

Main Methods:

  • Generated prostate-specific single and double knockout mice for Spop and Chd1 using the Cre/loxP system.
  • Utilized human benign prostatic hyperplasia (BPH1) cell lines for SPOP mutant overexpression and CHD1 knockdown experiments.
  • Assessed DNA damage and homologous recombination repair via immunofluorescence staining of γH2AX and RAD51.

Main Results:

  • Spop/Chd1 double-knockout mice showed prostatic intraepithelial neoplasia but not adenocarcinoma.
  • Double-knockout prostates had increased proliferation and γH2AX staining compared to single knockouts.
  • In BPH1 cells, SPOP mutation and CHD1 silencing synergistically increased sensitivity to camptothecin-induced DNA damage.

Conclusions:

  • SPOP and CHD1 cooperate to promote DNA damage repair in prostate epithelial cells.
  • Further research is needed to identify complementary drivers in the SPOP/CHD1 PCa subtype.
  • This PCa subtype may exhibit sensitivity to PARP inhibitors or DNA-damaging agents.

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