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Topoisomerase III-beta protects from immune dysregulation and tumorigenesis.

Science advances 2025 Vol.11(51) p. eady7028

Al Mahmud MR, Baechler SA, Dhall A, Saha S, Zhang H, Bassel L, Zhang S, Lee MJ, Sato N, Rastogi S, Kumar S, Alam MS, Saha LK, Mock BA, Factor VM, Pommier Y

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Topoisomerase III-beta (Top3b) reduces nucleic acid torsional stress and intertwining generated during RNA and DNA metabolism while protecting the genome from pathological R-loops, which otherwise res

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APA Al Mahmud MR, Baechler SA, et al. (2025). Topoisomerase III-beta protects from immune dysregulation and tumorigenesis.. Science advances, 11(51), eady7028. https://doi.org/10.1126/sciadv.ady7028
MLA Al Mahmud MR, et al.. "Topoisomerase III-beta protects from immune dysregulation and tumorigenesis.." Science advances, vol. 11, no. 51, 2025, pp. eady7028.
PMID 41417894

Abstract

Topoisomerase III-beta (Top3b) reduces nucleic acid torsional stress and intertwining generated during RNA and DNA metabolism while protecting the genome from pathological R-loops, which otherwise result in DNA breakage and genome instability. By studying knockout mice (-KO), we find that the loss of Top3b accelerates the development of spontaneous atypical lymphoid hyperplasia and lymphomas arising in spleens and lymph nodes, organs with prominent Top3b expression. Aging -KO mice also display splenomegaly and systemic immune alterations including neutrophilia and lymphopenia consistent with chronic inflammation. At the molecular level, Top3b deficiency causes genome-wide R-loop accumulation in splenocytes as measured by CUT&Tag sequencing. Increased R-loops are associated with genomic breaks and activation of immune signaling pathways including innate and adaptive immune cell signaling, IL-4 signaling, FAK signaling, and cGAS-STING. In addition, knocking-out promotes the rapid development of syngeneic EL4 T cell lymphomas. In conclusion, our work implies that Top3b protects from lymphoma, tumorigenesis, and immune dysregulations.

MeSH Terms

Animals; Mice; Mice, Knockout; Carcinogenesis; DNA Topoisomerases, Type I; Signal Transduction; Lymphoma