The influence of MHC class II on B cell defects induced by invariant chain/CD74 N-terminal fragments

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • Janna Schneppenheim - , Kiel University (Author)
  • Ann Christine Loock - , Kiel University (Author)
  • Susann Hüttl - , Kiel University (Author)
  • Michaela Schweizer - , University Hospital Hamburg Eppendorf (Author)
  • Renate Lüllmann-Rauch - , Kiel University (Author)
  • Hans Heinrich Oberg - , Kiel University (Author)
  • Philipp Arnold - , Kiel University (Author)
  • Christian H.K. Lehmann - , Friedrich-Alexander University Erlangen-Nürnberg (Author)
  • Diana Dudziak - , Friedrich-Alexander University Erlangen-Nürnberg, University Hospital at the Friedrich-Alexander University Erlangen-Nürnberg (Author)
  • Dieter Kabelitz - , Kiel University (Author)
  • Ralph Lucius - , Kiel University (Author)
  • Ana Maria Lennon-Duménil - , Université PSL (Author)
  • Paul Saftig - , Kiel University (Author)
  • Bernd Schröder - , Institute of Physiological Chemistry, Kiel University (Author)

Abstract

The invariant chain (CD74) mediates assembly and targeting of MHC class II (MHCII) complexes. In endosomes, CD74 undergoes sequential degradation by different proteases, including cathepsin S (CatS) and the intramembrane protease signal peptide peptidase-like 2a (SPPL2a). In their absence, CD74 N-terminal fragments (NTFs) accumulate. In SPPL2a-/- B cells, such an NTF impairs endosomal trafficking and BCR signal transduction. In mice, this leads to a loss of splenic B cells beyond the transitional stage 1. To gain insight into CD74 determinants and the role of MHCII, we compared B cells from CatS-/-, SPPL2a-/-, and SPPL2a-MHCII double-deficient mice. We assessed differentiation of B cells in bone marrow and spleen and analyzed their endosomal morphology, BCR expression, and signal transduction. We demonstrate that MHCII is dispensable for the B cell phenotype of SPPL2a-/- mice, further supporting a CD74-intrinsic effect. Despite significant vacuolization of endosomal compartments similar to SPPL2a-/- B cells, CatS-/- traditional stage 1 B cells show unimpaired degradation of endocytic cargo, have intact BCR signaling, and do not exhibit any relevant defects in maturation. This could indicate that CD74 NTF-induced structural changes of endosomes are not directly involved in these processes. We further found that the block of CD74 degradation in CatS-/- B cells is incomplete, so that NTF levels are significantly lower than in SPPL2a-/- B cells. This suggests a dose dependency and threshold for the CD74 NTF-associated impairment of B cell signaling and maturation. In addition, different functional properties of the longer, MHCII-bound CD74 NTF could contribute to the milder phenotype of CatS-/- B cells.

Details

Original languageEnglish
Pages (from-to)172-185
Number of pages14
JournalJournal of Immunology
Volume199
Issue number1
Publication statusPublished - 1 Jul 2017
Peer-reviewedYes

External IDs

PubMed 28550201

Keywords

ASJC Scopus subject areas