The Intramembrane Proteases Signal Peptide Peptidase-Like 2a and 2b Have Distinct Functions In Vivo

Author:

Schneppenheim Janna1,Hüttl Susann1,Mentrup Torben1,Lüllmann-Rauch Renate2,Rothaug Michelle1,Engelke Michael3,Dittmann Kai3,Dressel Ralf3,Araki Masatake4,Araki Kimi5,Wienands Jürgen3,Fluhrer Regina67,Saftig Paul1,Schröder Bernd1

Affiliation:

1. Biochemical Institute, Christian Albrechts University of Kiel, Kiel, Germany

2. Institute of Anatomy, Christian Albrechts University of Kiel, Kiel, Germany

3. Institute for Cellular and Molecular Immunology, Georg August University of Göttingen, Göttingen, Germany

4. Division of Bioinformatics, Institute of Resource Development and Analysis, Kumamoto University, Kumamoto, Japan

5. Division of Developmental Genetics, Institute of Resource Development and Analysis, Kumamoto University, Kumamoto, Japan

6. Adolf Butenandt Institute for Biochemistry, Ludwig Maximilians University of Munich, Munich, Germany

7. German Center for Neurodegenerative Diseases, Munich, Germany

Abstract

ABSTRACT We reported recently that the presenilin homologue signal peptide peptidase-like 2a (SPPL2a) is essential for B cell development by cleaving the N-terminal fragment (NTF) of the invariant chain (li, CD74). Based on this, we suggested that pharmacological modulation of SPPL2a may represent a novel approach to deplete B cells in autoimmune disorders. With regard to reported overlapping substrate spectra of SPPL2a and its close homologue, SPPL2b, we investigated the role of SPPL2b in CD74 NTF proteolysis and its impact on B and dendritic cell homeostasis. In heterologous expression experiments, SPPL2b was found to cleave CD74 NTF with an efficiency simliar to that of SPPL2a. For in vivo analysis, SPPL2b single-deficient and SPPL2a/SPPL2b double-deficient mice were generated and examined for CD74 NTF turnover/accumulation, B cell maturation and functionality, and dendritic cell homeostasis. We demonstrate that in vivo SPPL2b does not exhibit a physiologically relevant contribution to CD74 proteolysis in B and dendritic cells. Furthermore, we reveal that both proteases exhibit divergent subcellular localizations in B cells and different expression profiles in murine tissues. These findings suggest distinct functions of SPPL2a and SPPL2b and, based on a high abundance of SPPL2b in brain, a physiological role of this protease in the central nervous system.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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