LUBAC accelerates B-cell lymphomagenesis by conferring resistance to genotoxic stress on B cells

Author:

Jo Tomoyasu12ORCID,Nishikori Momoko1ORCID,Kogure Yasunori34ORCID,Arima Hiroshi1,Sasaki Katsuhiro2ORCID,Sasaki Yoshiteru2,Nakagawa Tomoko2,Iwai Fumie1,Momose Shuji5,Shiraishi Aki6,Kiyonari Hiroshi67ORCID,Kagaya Noritaka8,Onuki Tetsuo9,Shin-ya Kazuo810ORCID,Yoshida Minoru91112ORCID,Kataoka Keisuke34,Ogawa Seishi313ORCID,Iwai Kazuhiro2ORCID,Takaori-Kondo Akifumi1ORCID

Affiliation:

1. Department of Hematology and Oncology,

2. Department of Molecular and Cellular Physiology, and

3. Department of Pathology and Tumor Biology, Graduate School of Medicine, Kyoto University, Kyoto, Japan;

4. Division of Molecular Oncology, National Cancer Center Research Institute, Tokyo, Japan;

5. Department of Pathology, Saitama Medical Center, Saitama Medical University, Kawagoe, Japan;

6. Laboratories for Animal Resource Development and

7. Laboratories for Genetic Engineering, RIKEN Center for Biosystems Dynamics Research, Kobe, Japan;

8. National Institute of Advanced Industrial Science and Technology (AIST), Tokyo, Japan;

9. Seed Compound Exploratory Unit for Drug Discovery Platform, RIKEN Center for Sustainable Resource Science, Wako, Japan;

10. Biotechnology Research Center and Collaborative Research Institute for Innovative Microbiology, The University of Tokyo, Tokyo, Japan;

11. Chemical Genomics Research Group, RIKEN Center for Sustainable Resource Science, Wako, Japan;

12. Department of Biotechnology, Graduate School of Agriculture and Life Sciences, The University of Tokyo, Tokyo, Japan; and

13. Department of Medicine, Center for Hematology and Regenerative Medicine, Karolinska Institute, Stockholm, Sweden

Abstract

Abstract The linear ubiquitin chain assembly complex (LUBAC) is a key regulator of NF-κB signaling. Activating single-nucleotide polymorphisms of HOIP, the catalytic subunit of LUBAC, are enriched in patients with activated B-cell–like (ABC) diffuse large B-cell lymphoma (DLBCL), and expression of HOIP, which parallels LUBAC activity, is elevated in ABC-DLBCL samples. Thus, to clarify the precise roles of LUBAC in lymphomagenesis, we generated a mouse model with augmented expression of HOIP in B cells. Interestingly, augmented HOIP expression facilitated DLBCL-like B-cell lymphomagenesis driven by MYD88-activating mutation. The developed lymphoma cells partly shared somatic gene mutations with human DLBCLs, with increased frequency of a typical AID mutation pattern. In vitro analysis revealed that HOIP overexpression protected B cells from DNA damage-induced cell death through NF-κB activation, and analysis of the human DLBCL database showed that expression of HOIP positively correlated with gene signatures representing regulation of apoptosis signaling, as well as NF-κB signaling. These results indicate that HOIP facilitates lymphomagenesis by preventing cell death and augmenting NF-κB signaling, leading to accumulation of AID-mediated mutations. Furthermore, a natural compound that specifically inhibits LUBAC was shown to suppress the tumor growth in a mouse transplantation model. Collectively, our data indicate that LUBAC is crucially involved in B-cell lymphomagenesis through protection against DNA damage–induced cell death and is a suitable therapeutic target for B-cell lymphomas.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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