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.

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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