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Immunodeficiency, autoimmunity, and increased risk of B cell malignancy in humans with TRAF3 mutations

  • William Rae
  • , John M Sowerby
  • , Dorit Verhoeven
  • , Mariam Youssef
  • , Prasanti Kotagiri
  • , Natalia Savinykh
  • , Eve L Coomber
  • , Alexis Boneparth
  • , Angela Chan
  • , Chun Gong
  • , Machiel H Jansen
  • , Romy du Long
  • , Giorgia Santilli
  • , Ilenia Simeoni
  • , Jonathan Stephens
  • , Kejia Wu
  • , Marta Zinicola
  • , Hana Lango Allen
  • , Helen Baxendale
  • , Dinakantha Kumararatne
  • Effrossyni Gkrania-Klotsas, Selma C Scheffler Mendoza, Marco Antonio Yamazaki-Nakashimada, Laura Berrón Ruiz, Cesar Mauricio Rojas-Maruri, Saul O Lugo Reyes, Paul A Lyons, Anthony P Williams, Daniel J Hodson, Gail A Bishop, Adrian J Thrasher, David C Thomas, Michael P Murphy, Timothy J Vyse, Joshua D Milner, Taco W Kuijpers, Kenneth G C Smith

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Tumor necrosis factor receptor-associated factor 3 (TRAF3) is a central regulator of immunity. TRAF3 is often somatically mutated in B cell malignancies, but its role in human immunity is not defined. Here, in five unrelated families, we describe an immune dysregulation syndrome of recurrent bacterial infections, autoimmunity, systemic inflammation, B cell lymphoproliferation, and hypergammaglobulinemia. Affected individuals each had monoallelic mutations in TRAF3 that reduced TRAF3 expression. Immunophenotyping showed that patients' B cells were dysregulated, exhibiting increased nuclear factor-κB 2 activation, elevated mitochondrial respiration, and heightened inflammatory responses. Patients had mild CD4+ T cell lymphopenia, with a reduced proportion of naïve T cells but increased regulatory T cells and circulating T follicular helper cells. Guided by this clinical phenotype, targeted analyses demonstrated that common genetic variants, which also reduce TRAF3 expression, are associated with an increased risk of B cell malignancies, systemic lupus erythematosus, higher immunoglobulin levels, and bacterial infections in the wider population. Reduced TRAF3 conveys disease risks by driving B cell hyperactivity via intrinsic activation of multiple intracellular proinflammatory pathways and increased mitochondrial respiration, with a likely contribution from dysregulated T cell help. Thus, we define monogenic TRAF3 haploinsufficiency syndrome and demonstrate how common TRAF3 variants affect a range of human diseases.

Original languageEnglish
Article numbereabn3800
Pages (from-to)eabn3800
JournalScience Immunology
Volume7
Issue number74
DOIs
Publication statusPublished - 12 Aug 2022
Externally publishedYes

Keywords

  • Autoimmunity/genetics
  • B-Lymphocytes
  • Humans
  • Mutation
  • Neoplasms/pathology
  • TNF Receptor-Associated Factor 3/genetics

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