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Updated: Sep 9, 2025

Author Spotlight: Decoding DNA Repair by Extrachromosomal NHEJ Assay and HR Assays
Published on: February 2, 2024
Chromatin-associated circRNA ciCRLF3(2) regulates cell differentiation blockage via activating non-homologous end
Ke-Jia Pu1, Xiao-Tong Chen1, Shun-Xin Zhu1
1MOE Key Laboratory of Gene Function and Regulation, Guangdong Province Key Laboratory of Pharmaceutical Functional Genes, State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.
Abstract:
DNA damage response (DDR) is a complicated network that responds to DNA lesions to prevent their accumulation; a defective DDR is one hallmark of cancer. Although targeting DDR pathways has been considered as a therapeutic approach, DDR inhibitors have also been reported ineffective for treating some low mutation burden cancers, such as Mixed-lineage leukemia (MLL)-rearranged (MLL-r) leukemia, a clinically fatal and refractory malignancy. Exploring the roles and mechanisms of DDR pathways in these low mutation burden cancers may help understand the chromatin biology and develop therapeutic strategies. Here, we identified a set of DDR-related chromatin-associated circular RNAs (cacircRNAs) that regulate DNA repair via the non-homologous end joining (NHEJ) pathway, which is vital for meeting the high DNA repair demands during the progression of MLL-r leukemia. Among these cacircRNAs, we identified ciCRLF3(2) as a previously unknown component of the NHEJ complex. We showed that ciCRLF3(2) recruits NHEJ regulators to DNA lesions, supporting abundant DNA repair in leukemia cells. ciCRLF3(2) abundance is abnormally upregulated in MLL-r leukemia and indicates a poor prognosis. Targeting ciCRLF3(2) suppressed NHEJ-mediated DNA repair, leading to DNA damage and broad anti-cancer effects in vitro and in vivo. A patient-derived xenograft model of MLL-r leukemia further indicated that ciCRLF3(2) depletion can decrease the leukemic burden. These findings demonstrate the function of cacircRNAs in DDR and chromatin biology and reveal a new avenue for developing strategies to treat low mutation burden cancers, such as MLL-r leukemia.
Insights
Researchers discovered circular RNAs regulating DNA repair in Mixed-lineage leukemia (MLL-r). Targeting ciCRLF3(2) suppressed this repair, showing anti-cancer effects in MLL-r leukemia, a low mutation burden cancer.
Area of Science:
- Cancer Biology
- Molecular Oncology
- Chromatin Biology
Background:
- Defective DNA damage response (DDR) is a hallmark of cancer.
- Targeting DDR pathways is a therapeutic strategy, but ineffective in some low mutation burden cancers like MLL-r leukemia.
- Understanding DDR in MLL-r leukemia is crucial for developing new therapies.
Purpose of the Study:
- To identify DDR-related chromatin-associated circular RNAs (cacircRNAs) in MLL-r leukemia.
- To investigate the role of ciCRLF3(2) in the non-homologous end joining (NHEJ) DNA repair pathway.
- To evaluate ciCRLF3(2) as a therapeutic target for MLL-r leukemia.
Main Methods:
- Identification of DDR-related cacircRNAs.
- Characterization of ciCRLF3(2) function in NHEJ.
- Assessment of ciCRLF3(2) targeting in MLL-r leukemia models (in vitro and in vivo).
Main Results:
- A novel set of cacircRNAs regulating NHEJ DNA repair was identified.
- ciCRLF3(2) was found to be a previously unknown component of the NHEJ complex, recruiting regulators to DNA lesions.
- ciCRLF3(2) is upregulated in MLL-r leukemia, correlates with poor prognosis, and its targeting reduces leukemic burden.
Conclusions:
- cacircRNAs play a significant role in DDR and chromatin biology.
- ciCRLF3(2) is a key regulator of NHEJ in MLL-r leukemia.
- Targeting ciCRLF3(2) offers a promising therapeutic strategy for low mutation burden cancers like MLL-r leukemia.
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