Related Experiment Video
Updated: Dec 6, 2025

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
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.
Background:
Recent genomic profiling has identified a subtype of prostate cancer (PCa) characterized by two key genetic alterations: missense mutation of speckle-type POZ protein (SPOP) and homozygous deletion of chromodomain helicase DNA-binding protein 1 (CHD1). Mutually exclusive with E26 transformation-specific (ETS) rearrangements, this subtype displays high genomic instability. Previous studies indicate that deficient SPOP or CHD1 alone leads to feeble prostate abnormalities and each protein is involved in DNA damage response (DDR). It remains to be determined whether CHD1 and SPOP cooperate to suppress prostate tumorigenesis and DDR.
Methods:
Prostate-specific single or double knockout of Spop and Chd1 was generated with the Cre/loxP system in mice. Wild-type or mutant SPOP (F102C, F133V) overexpression and CHD1 knockdown with short hairpin RNA were created in human benign prostatic hyperplasia cell line BPH1. The levels of DNA damage and homologous recombination repair were measured by immunofluorescence staining of γH2AX and RAD51, respectively.
Results:
Spop/Chd1 double-knockout mice displayed prostatic intraepithelial neoplasia at both young (3 months) and old (12 months) ages and failed to generate prostate adenocarcinoma. Compared with wild-type or single-knockout mice, the double-knockout prostate harbored moderately higher proliferating cells and dramatically augmented the level of γH2AX staining, although androgen receptor-positive cells and apoptotic cells remained at a similar level. In BPH1 cell line, SPOP mutant overexpression and CHD1 silencing synergistically sensitized the cells to DNA damage by camptothecin, an inducer of double-strand breaks.
Conclusions:
Our results indicate that SPOP and CHD1 can synergistically promote repair of naturally occurring or chemically induced DNA damages in prostate epithelial cells. Regarding the progression of the SPOP/CHD1 subtype of PCa, other functionally complementary drivers warrant further identification. The clinical implication is that this subtype of PCa may be particularly sensitive to poly(ADP-ribose) polymerase inhibitors or DNA-damaging agents.
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.
More Related Videos
09:14Examination of Proteins Bound to Nascent DNA in Mammalian Cells Using BrdU-ChIP-Slot-Western Technique
Published on: January 14, 2016
12:19Tools to Study the Role of Architectural Protein HMGB1 in the Processing of Helix Distorting, Site-specific DNA Interstrand Crosslinks
Published on: November 10, 2016
Related Concept Videos
DNA Damage can Stall the Cell Cycle
DNA Damage Can Stall the Cell Cycle
Negative Regulator Molecules
Abnormal Proliferation
Inhibition of Cdk Activity
Homologous Recombination