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MDS/AML-associated DDX41 helicase facilitates homologous recombination repair by potentially resolving R-loops.

Nucleic acids research 2026 Vol.54(5)

Aggarwal A, Yang S, Winstone L, Mondal S, Grainger H, Singh RS, Arna AB, Vizeacoumar FJ, Wu Y

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DDX41 mutations are associated with myeloid neoplasms, including myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML), and missense mutant R525H is seen in 67% of patients; however, its mol

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APA Aggarwal A, Yang S, et al. (2026). MDS/AML-associated DDX41 helicase facilitates homologous recombination repair by potentially resolving R-loops.. Nucleic acids research, 54(5). https://doi.org/10.1093/nar/gkag219
MLA Aggarwal A, et al.. "MDS/AML-associated DDX41 helicase facilitates homologous recombination repair by potentially resolving R-loops.." Nucleic acids research, vol. 54, no. 5, 2026.
PMID 41816910
DOI 10.1093/nar/gkag219

Abstract

DDX41 mutations are associated with myeloid neoplasms, including myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML), and missense mutant R525H is seen in 67% of patients; however, its molecular pathogenesis is unknown. Using DDX41 knockout (KO) cells, we found that these cells were sensitive to bleomycin, camptothecin, and UV. DDX41 deficiency led to increased genomic instability, indicated by elevated DNA double-strand breaks (DSBs) and comet tails. We found that R-loop formation increased in DDX41-KO cells. DDX41 wild-type (WT) protein resolved DNA:RNA hybrid of R-loops in vitro, but the mutant R525H failed. DDX41-R525H expressing cells were sensitive to DNA damage agents and had significantly more R-loops than DDX41-WT expressing cells. Interestingly, DDX41 colocalized with DSB marker γH2AX and R-loop marker S9.6, and knockdown of DDX41 in the U2OS GFP reporter cells resulted in reduced homologous recombination (HR) repair. Moreover, increased and prolonged RPA and reduced RAD51 foci were found in DDX41 KO and DDX41-R525H expressing cells, indicating a defect in the transition from end resection to RAD51 filament assembly. Overall, our results suggest that DDX41 utilizes its unwinding activity to resolve R-loops, which may play a key role in HR-based repair, and dysregulation of this pathway may lead to MDS/AML.

MeSH Terms

DEAD-box RNA Helicases; Humans; R-Loop Structures; Recombinational DNA Repair; DNA Breaks, Double-Stranded; Myelodysplastic Syndromes; Leukemia, Myeloid, Acute; Genomic Instability; Histones; Cell Line, Tumor; Rad51 Recombinase