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Published on: October 14, 2022
Cryptochromes and UBP12/13 deubiquitinases antagonistically regulate DNA damage response in Arabidopsis
Yuzhao Hu1, Daniele Rosado1, Louise N Lindbäck1
1Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, New York 11724.
Abstract:
Cryptochromes (CRYs) are evolutionarily conserved blue-light receptors that evolved from bacterial photolyases that repair damaged DNA. Today, CRYs have lost their ability to repair damaged DNA; however, prior reports suggest that human CRYs can respond to DNA damage. Currently, the role of CRYs in the DNA damage response (DDR) is lacking, especially in plants. Therefore, we evaluated the role of plant CRYs in DDR along with UBP12/13 deubiquitinases, which interact with and regulate the CRY2 protein. We found that cry1cry2 was hypersensitive, while ubp12ubp13 was hyposensitive to UVC-induced DNA damage. Elevated UV-induced cyclobutane pyrimidine dimers (CPDs) and the lack of DNA repair protein RAD51 accumulation in cry1cry2 plants indicate that CRYs are required for DNA repair. On the contrary, CPD levels diminished and RAD51 protein levels elevated in plants lacking UBP12 and UBP13, indicating their role in DDR repression. Temporal transcriptomic analysis revealed that DDR-induced transcriptional responses were subdued in cry1cry2, but elevated in ubp12ubp13 compared to WT. Through transcriptional modeling of the time-course transcriptome, we found that genes quickly induced by UVC (15 min) are targets of CAMTA 1-3 transcription factors, which we found are required for DDR. This transcriptional regulation seems, however, diminished in the cry1cry2 mutant, indicating that CAMTAs are required for CRY2-mediated DDR. Furthermore, we observed enhanced CRY2-UBP13 interaction and formation of CRY2 nuclear speckles under UVC, suggesting that UVC activates CRY2 similarly to blue light. Together, our data reveal the temporal dynamics of the transcriptional events underlying UVC-induced genotoxicity and expand our knowledge of the role of CRY and UBP12/13 in DDR.
Insights
Plant cryptochromes (CRYs) are essential for DNA repair after UV damage, while UBP12/13 deubiquitinases repress this response. CRYs regulate DNA repair pathways, including CAMTA transcription factors, crucial for UV genotoxicity response.
Area of Science:
- Plant molecular biology
- Genetics
- Biochemistry
Background:
- Cryptochromes (CRYs), blue-light receptors evolved from DNA repair enzymes, are investigated for their role in the DNA damage response (DDR).
- The function of CRYs and interacting deubiquitinases (UBP12/13) in plant DDR, particularly concerning UVC-induced DNA damage, remains largely unexplored.
Approach:
- Investigated the sensitivity of cry1cry2 and ubp12ubp13 mutants to UVC-induced DNA damage.
- Assessed DNA repair markers such as cyclobutane pyrimidine dimers (CPDs) and RAD51 protein accumulation.
- Conducted temporal transcriptomic analysis and transcriptional modeling to understand gene regulation.
- Examined CRY2-UBP13 interactions and nuclear localization under UVC stress.
Key Points:
- cry1cry2 mutants exhibit hypersensitivity to UVC, with elevated CPDs and reduced RAD51, indicating CRYs are required for DNA repair.
- ubp12ubp13 mutants show hyposensitivity to UVC, with diminished CPDs and increased RAD51, suggesting UBP12/13 repress DDR.
- CRYs mediate DDR through CAMTA transcription factors, with CRY2's role being critical for this transcriptional regulation.
- UVC exposure enhances CRY2-UBP13 interaction and nuclear speckle formation, similar to blue-light activation.
Conclusions:
- Plant CRYs are crucial for repairing UVC-induced DNA damage, while UBP12/13 act as repressors of this response.
- CRYs regulate DDR via CAMTA transcription factors, highlighting a novel CRY2-mediated pathway.
- This study elucidates the temporal dynamics of transcriptional events in response to UVC genotoxicity and expands understanding of CRY and UBP12/13 functions in DDR.
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