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Publication : A discrete ubiquitin-mediated network regulates the strength of NOD2 signaling.

First Author  Tigno-Aranjuez JT Year  2013
Journal  Mol Cell Biol Volume  33
Issue  1 Pages  146-58
PubMed ID  23109427 Mgi Jnum  J:192843
Mgi Id  MGI:5466643 Doi  10.1128/MCB.01049-12
Citation  Tigno-Aranjuez JT, et al. (2013) A discrete ubiquitin-mediated network regulates the strength of NOD2 signaling. Mol Cell Biol 33(1):146-58
abstractText  Dysregulation of NOD2 signaling is implicated in the pathology of various inflammatory diseases, including Crohn's disease, asthma, and sarcoidosis, making signaling proteins downstream of NOD2 potential therapeutic targets. Inhibitor-of-apoptosis (IAP) proteins, particularly cIAP1, are essential mediators of NOD2 signaling, and in this work, we describe a molecular mechanism for cIAP1's regulation in the NOD2 signaling pathway. While cIAP1 promotes RIP2's tyrosine phosphorylation and subsequent NOD2 signaling, this positive regulation is countered by another E3 ubiquitin ligase, ITCH, through direct ubiquitination of cIAP1. This ITCH-mediated ubiquitination leads to cIAP1's lysosomal degradation. Pharmacologic inhibition of cIAP1 expression in ITCH(-/-) macrophages attenuates heightened ITCH(-/-) macrophage muramyl dipeptide-induced responses. Transcriptome analysis, combined with pharmacologic inhibition of cIAP1, further defines specific pathways within the NOD2 signaling pathway that are targeted by cIAP1. This information provides genetic signatures that may be useful in repurposing cIAP1-targeted therapies to correct NOD2-hyperactive states and identifies a ubiquitin-regulated signaling network centered on ITCH and cIAP1 that controls the strength of NOD2 signaling.
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