ATM deficiency promotes development of murine B-cell lymphomas that resemble diffuse large B-cell lymphoma in humans

The serine-threonine kinase ataxia-telangiectasia mutated (ATM) plays a central role in maintaining genomic integrity. In mice, ATM deficiency is exclusively associated with T-cell lymphoma development, whereas B-cell tumors predominate in human ataxia-telangiectasia patients. We demonstrate in this...

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Veröffentlicht in:Blood 2015-11, Vol.126 (20), p.2291-2301
Hauptverfasser: Hathcock, Karen S., Padilla-Nash, Hesed M., Camps, Jordi, Shin, Dong-Mi, Triner, Daniel, Shaffer, Arthur L., Maul, Robert W., Steinberg, Seth M., Gearhart, Patricia J., Staudt, Louis M., Morse, Herbert C., Ried, Thomas, Hodes, Richard J.
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Sprache:eng
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Zusammenfassung:The serine-threonine kinase ataxia-telangiectasia mutated (ATM) plays a central role in maintaining genomic integrity. In mice, ATM deficiency is exclusively associated with T-cell lymphoma development, whereas B-cell tumors predominate in human ataxia-telangiectasia patients. We demonstrate in this study that when T cells are removed as targets for lymphomagenesis and as mediators of immune surveillance, ATM-deficient mice exclusively develop early-onset immunoglobulin M+ B-cell lymphomas that do not transplant to immunocompetent mice and that histologically and genetically resemble the activated B cell–like (ABC) subset of human diffuse large B-cell lymphoma (DLBCL). These B-cell lymphomas show considerable chromosomal instability and a recurrent genomic amplification of a 4.48-Mb region on chromosome 18 that contains Malt1 and is orthologous to a region similarly amplified in human ABC DLBCL. Of importance, amplification of Malt1 in these lymphomas correlates with their dependence on nuclear factor (NF)-κB, MALT1, and B-cell receptor (BCR) signaling for survival, paralleling human ABC DLBCL. Further, like some human ABC DLBCLs, these mouse B-cell lymphomas also exhibit constitutive BCR-dependent NF-κB activation. This study reveals that ATM protects against development of B-cell lymphomas that model human ABC DLBCL and identifies a potential role for T cells in preventing the emergence of these tumors. •ATM deficiency promotes the development of murine B-cell lymphomas that model human ABC DLBCL.•T cell–dependent immune surveillance may be important to prevent emergence of ATM-deficient B-cell lymphomas.
ISSN:0006-4971
1528-0020
DOI:10.1182/blood-2015-06-654749