IgM+IgD+CD27+ B cells are markedly reduced in IRAK-4-, MyD88-, and TIRAP- but not UNC-93B-deficient patients

  • Sandra Weller
  • , Mélanie Bonnet
  • , Héloïse Delagreverie
  • , Laura Israel
  • , Maya Chrabieh
  • , László Maródi
  • , Carlos Rodriguez-Gallego
  • , Ben Zion Garty
  • , Chaim Roifman
  • , Andrew C. Issekutz
  • , Simona Eva Zitnik
  • , Cyrille Hoarau
  • , Yildiz Camcioglu
  • , Júlia Vasconcelos
  • , Carlos Rodrigo
  • , Peter D. Arkwright
  • , Andrea Cerutti
  • , Eric Meffre
  • , Shen Ying Zhang
  • , Alexandre Alcais
  • Anne Puel, Jean Laurent Casanova, Capucine Picard, Jean Claude Weill, Claude Agnès Reynaud

Research output: Contribution to journalArticlepeer-review

91 Scopus citations

Abstract

We studied the distribution of peripheral B-cell subsets in patients deficient for key factors of the TLR-signaling pathways (MyD88, TIRAP/MAL, IL-1 receptor-associated kinase 4 [IRAK-4], TLR3, UNC-93B, TRIF). All TLRs, except TLR3, which signals through the TRIF adaptor, require MyD88 and IRAK-4 to mediate their function. TLR4 and the TLR2 heterodimers (with TLR1, TLR6, and possibly TLR10) require in addition the adaptor TIRAP, whereas UNC-93B is needed for the proper localization of intracellular TLR3, TLR7, TLR8, and TLR9. We found that IgM+IgD+CD27+ but not switched B cells were strongly reduced in MyD88-, IRAK-4-, and TIRAP-deficient patients. This defect did not appear to be compensated with age. However, somatic hypermutation of Ig genes and heavy-chain CDR3 size distribution of IgM +IgD+CD27+ B cells were not affected in these patients. In contrast, the numbers of IgM+IgD+CD27 + B cells were normal in the absence of TLR3, TRIF, and UNC-93B, suggesting that UNC-93B-dependent TLRs, and notably TLR9, are dispensable for the presence of this subset in peripheral blood. Interestingly, TLR10 was found to be expressed at greater levels in IgM+IgD+CD27 + compared with switched B cells in healthy patients. Hence, we propose a role for TIRAP-dependent TLRs, possibly TLR10 in particular, in the development and/or maintenance of IgM+IgD+CD27+ B cells in humans.

Original languageEnglish
Pages (from-to)4992-5001
Number of pages10
JournalBlood
Volume120
Issue number25
DOIs
StatePublished - 13 Dec 2012

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