B cell survival, surface BCR and BAFFR expression, CD74 metabolism, and CD8− dendritic cells require the intramembrane endopeptidase SPPL2A

Author:

Bergmann Hannes1,Yabas Mehmet1,Short Alanna1,Miosge Lisa1,Barthel Nadine1,Teh Charis E.1,Roots Carla M.1,Bull Katherine R.2,Jeelall Yogesh1,Horikawa Keisuke1,Whittle Belinda1,Balakishnan Bhavani11,Sjollema Geoff1,Bertram Edward M.11,Mackay Fabienne3,Rimmer Andrew J.2,Cornall Richard J.2,Field Matthew A.11,Andrews T. Daniel11,Goodnow Christopher C.1,Enders Anselm1

Affiliation:

1. Ramaciotti Immunization Genomics Laboratory, Department of Immunology; and Australian Phenomics Facility; John Curtin School of Medical Research, The Australian National University, Canberra, Australian Capital Territory 2600, Australia

2. Nuffield Department of Clinical Medicine and Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford OX3 7BN, England, UK

3. Department of Immunology, Faculty of Medicine, Nursing, and Health Sciences, Central Clinical School, Alfred Hospital, Monash University, Melbourne, Victoria 3004, Australia

Abstract

Druggable proteins required for B lymphocyte survival and immune responses are an emerging source of new treatments for autoimmunity and lymphoid malignancy. In this study, we show that mice with an inactivating mutation in the intramembrane protease signal peptide peptidase–like 2A (SPPL2A) unexpectedly exhibit profound humoral immunodeficiency and lack mature B cell subsets, mirroring deficiency of the cytokine B cell–activating factor (BAFF). Accumulation of Sppl2a-deficient B cells was rescued by overexpression of the BAFF-induced survival protein B cell lymphoma 2 (BCL2) but not BAFF and was distinguished by low surface BAFF receptor and IgM and IgD B cell receptors. CD8-negative dendritic cells were also greatly decreased. SPPL2A deficiency blocked the proteolytic processing of CD74 MHC II invariant chain in both cell types, causing dramatic build-up of the p8 product of Cathepsin S and interfering with earlier steps in CD74 endosomal retention and processing. The findings illuminate an important role for the final step in the CD74–MHC II pathway and a new target for protease inhibitor treatment of B cell diseases.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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