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Nucleotide-Induced Membrane-Proximal Proteolysis Controls the Substrate Specificity of T Cell Ecto–ADP-Ribosyltransferase ARTC2.2

Authors :
Andreas Tholey
Björn Rissiek
Marion Nissen
Thomas Jakoby
Stephan Menzel
Nicole Schwarz
Maria Miksiewicz
Friedrich Haag
Friedrich Koch-Nolte
Peter Bannas
Source :
The Journal of Immunology. 195:2057-2066
Publication Year :
2015
Publisher :
The American Association of Immunologists, 2015.

Abstract

ARTC2.2 is a toxin-related, GPI-anchored ADP-ribosyltransferase expressed by murine T cells. In response to NAD+ released from damaged cells during inflammation, ARTC2.2 ADP-ribosylates and thereby gates the P2X7 ion channel. This induces ectodomain shedding of metalloprotease-sensitive cell surface proteins. In this study, we show that ARTC2.2 itself is a target for P2X7-triggered ectodomain shedding. We identify the metalloprotease cleavage site 3 aa upstream of the predicted GPI anchor attachment site of ARTC2.2. Intravenous injection of NAD+ increased the level of enzymatically active ARTC2.2 in serum, indicating that this mechanism is operative also under inflammatory conditions in vivo. Radio–ADP-ribosylation assays reveal that shedding refocuses the target specificity of ARTC2.2 from membrane proteins to secretory proteins. Our results uncover nucleotide-induced membrane-proximal proteolysis as a regulatory mechanism to control the substrate specificity of ARTC2.2.

Details

ISSN :
15506606 and 00221767
Volume :
195
Database :
OpenAIRE
Journal :
The Journal of Immunology
Accession number :
edsair.doi.dedup.....4084e1201a6a474147b14093b51790df
Full Text :
https://doi.org/10.4049/jimmunol.1401677