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Functional Characterization of RING-Type E3 Ubiquitin Ligases In Vitro and In Planta
Published on: December 5, 2019
Inactivating UBE2M impacts the DNA damage response and genome integrity involving multiple cullin ligases
Scott Cukras1, Nicholas Morffy1, Takbum Ohn2
1Department of Cell Biology, Microbiology, and Molecular Biology, College of Arts and Sciences, University of South Florida, Tampa, Florida, United States of America.
Abstract:
Protein neddylation is involved in a wide variety of cellular processes. Here we show that the DNA damage response is perturbed in cells inactivated with an E2 Nedd8 conjugating enzyme UBE2M, measured by RAD51 foci formation kinetics and cell based DNA repair assays. UBE2M knockdown increases DNA breakages and cellular sensitivity to DNA damaging agents, further suggesting heightened genomic instability and defective DNA repair activity. Investigating the downstream Cullin targets of UBE2M revealed that silencing of Cullin 1, 2, and 4 ligases incurred significant DNA damage. In particular, UBE2M knockdown, or defective neddylation of Cullin 2, leads to a blockade in the G1 to S progression and is associated with delayed S-phase dependent DNA damage response. Cullin 4 inactivation leads to an aberrantly high DNA damage response that is associated with increased DNA breakages and sensitivity of cells to DNA damaging agents, suggesting a DNA repair defect is associated. siRNA interrogation of key Cullin substrates show that CDT1, p21, and Claspin are involved in elevated DNA damage in the UBE2M knockdown cells. Therefore, UBE2M is required to maintain genome integrity by activating multiple Cullin ligases throughout the cell cycle.
Insights
Protein neddylation, mediated by UBE2M, is crucial for maintaining genome integrity. Its absence impairs DNA damage repair, leading to genomic instability and cell cycle arrest.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Protein neddylation regulates diverse cellular functions.
- The E2 Nedd8 conjugating enzyme UBE2M's role in DNA damage response is not fully understood.
Purpose of the Study:
- To investigate the role of UBE2M in DNA damage response and genome maintenance.
- To identify downstream targets of UBE2M involved in DNA repair.
Main Methods:
- Utilized UBE2M inactivation and knockdown models.
- Assessed DNA damage response via RAD51 foci formation and DNA repair assays.
- Examined the impact of UBE2M on Cullin ligase activity and substrates using siRNA.
Main Results:
- UBE2M inactivation perturbs DNA damage response, increasing DNA breakages and sensitivity to damaging agents.
- UBE2M deficiency causes G1 to S phase blockade and delayed S-phase DNA damage response, linked to Cullin 2 inactivation.
- Cullin 4 inactivation results in aberrant DNA damage response and repair defects.
- CDT1, p21, and Claspin are identified as key substrates involved in UBE2M-mediated DNA damage.
Conclusions:
- UBE2M is essential for maintaining genome integrity.
- UBE2M activates multiple Cullin ligases to ensure proper DNA repair throughout the cell cycle.
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