A genome-wide screen reveals that Dyrk1A kinase promotes nucleotide excision repair by preventing aberrant co-stabilization of cyclin D1 and p21
Belanger, F.; Roussel, C.; Sawchyn, C.; Gezzar-Dandashi, S.; Ishimwe, A. B. K.; Mallette, F. A.; Wurtele, H.; Drobetsky, E. A.
Show abstract
Nucleotide excision repair (NER) eliminates highly-genotoxic solar UV-induced DNA photoproducts that otherwise stimulate malignant melanoma development. Here, a genome-wide loss-of-function screen, coupling CRISPR/Cas9 technology with a flow cytometry-based DNA repair assay, was used to identify novel genes required for efficient NER in primary human fibroblasts. Interestingly, the screen revealed multiple genes encoding proteins, with no previously known involvement in UV damage repair, that significantly modulate NER uniquely during S phase of the cell cycle. Among these, we further characterized Dyrk1A, a dual specificity kinase that phosphorylates the proto-oncoprotein cyclin D1 on threonine 286 (T286), thereby stimulating its timely cytoplasmic relocalization and proteasomal degradation required for proper regulation of the G1-S phase transition and control of cellular proliferation. We demonstrate that in UV-irradiated HeLa cells, depletion of Dyrk1A leading to overexpression of cyclin D1 causes inhibition of NER uniquely during S phase and reduced cell survival. Consistently, expression/nuclear accumulation of nonphosphorylatable cyclin D1 (T286A) in melanoma cells strongly interferes with S phase NER and enhances cytotoxicity post-UV. Moreover, the negative impact of cyclin D1 (T286A) overexpression on repair is independent of cyclin-dependent kinase activity but requires cyclin D1-dependent co-stabilization of p21. Our data indicate that inhibition of NER during S phase might represent a previously unappreciated non-canonical mechanism by which oncogenic cyclin D1 fosters melanomagenesis.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Asymmetrical recognition and processing of double-strand breaks formed during DNA replication 96%
- Revised Mechanism of Hydroxyurea Induced Cell Cycle Arrest and an Improved Alternative 95%
- A DNA repair-independent role for alkyladenine DNA glycosylase in alkylation-induced unfolded protein response 95%
Similar papers in this journal
- Multiple cancer types rapidly escape from multiple MAPK inhibitors to generate mutagenesis-prone subpopulations 93%
- ELP-dependent expression of MCL1 promotes resistance to EGFR inhibition in triple-negative breast cancer cells 93%
- Sporadic activation of an oxidative stress-dependent NRF2-p53 signaling network in breast epithelial spheroids and premalignancies 92%
Similar papers in this journal
- The non-catalytic role of DNA polymerase epsilon in replication initiation in human cells 95%
- Cas9-induced large deletions and small indels are controlled in a convergent fashion 95%
- The RING Finger E3 Ligase RNF25 Protects DNA Replication Forks Independently of its Canonical Roles in Ubiquitin Signaling 94%
Similar papers in this journal
- Topological stress triggers persistent DNA lesions in ribosomal DNA with ensuing formation of PML-nucleolar compartment 96%
- Monoubiquitination by the Fanconi Anemia core complex locks FANCI:FANCD2 on DNA in filamentous arrays 95%
- Differential translation of mRNA isoforms underlies oncogenic activation of cell cycle kinase Aurora A 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.