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Updated: Jan 28, 2026

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
Role of deubiquitinases in DNA damage response
John Le1, Eric Perez1, Leah Nemzow1
1Department of Biochemistry and Molecular Biology, University of Miami Miller School of Medicine, United States.
Abstract:
DNA damage response (DDR) serves as an integrated cellular network to detect cellular stress and react by activating pathways responsible for halting cell cycle progression, stimulating DNA damage repair, and initiating apoptosis. Efficient DDR protects cells from genomic instability while defective DDR can allow DNA lesions to go unrepaired, causing permanent mutations that will affect future generations of cells and possibly cause disease conditions such as cancer. Therefore, DDR mechanisms must be tightly regulated in order to ensure organismal health and viability. One major way of DDR regulation is ubiquitination, which has been long known to control DDR protein localization, activity, and stability. The reversal of this process, deubiquitination, has more recently come to the forefront of DDR research as an important new angle in ubiquitin-mediated regulation of DDR. As such, deubiquitinases have emerged as key factors in DDR. Importantly, deubiquitinases are attractive small-molecule drug targets due to their well-defined catalytic residues that provide a promising avenue for developing new cancer therapeutics. This review focuses on the emerging roles of deubiquitinases in various DNA repair pathways.
Insights
Deubiquitinases are crucial regulators of the DNA damage response (DDR), controlling protein activity and stability. Targeting these enzymes offers a promising strategy for developing novel cancer therapeutics by modulating DNA repair pathways.
Area of Science:
- Molecular Biology
- Cellular Biology
- Biochemistry
Background:
- The DNA damage response (DDR) network is essential for maintaining genomic stability by managing cellular stress.
- Defective DDR can lead to mutations, genomic instability, and diseases like cancer.
- Ubiquitination is a key regulatory mechanism in DDR, controlling protein function and stability.
Purpose of the Study:
- To review the emerging roles of deubiquitinases in DNA repair pathways.
- To highlight deubiquitinases as potential therapeutic targets for cancer treatment.
Main Methods:
- Literature review of deubiquitinase involvement in DNA repair.
- Analysis of deubiquitinase mechanisms in DDR pathways.
Main Results:
- Deubiquitinases play critical roles in reversing ubiquitination within DDR.
- These enzymes influence protein localization, activity, and stability in response to DNA damage.
- Deubiquitinases are implicated in various DNA repair pathways.
Conclusions:
- Deubiquitination is a vital regulatory layer in the DNA damage response.
- Deubiquitinases represent attractive targets for small-molecule drug development in oncology.
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