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Publication : Functional genomics identifies negative regulatory nodes controlling phagocyte oxidative burst.

First Author  Graham DB Year  2015
Journal  Nat Commun Volume  6
Pages  7838 PubMed ID  26194095
Mgi Jnum  J:224449 Mgi Id  MGI:5662307
Doi  10.1038/ncomms8838 Citation  Graham DB, et al. (2015) Functional genomics identifies negative regulatory nodes controlling phagocyte oxidative burst. Nat Commun 6:7838
abstractText  The phagocyte oxidative burst, mediated by Nox2 NADPH oxidase-derived reactive oxygen species, confers host defense against a broad spectrum of bacterial and fungal pathogens. Loss-of-function mutations that impair function of the Nox2 complex result in a life-threatening immunodeficiency, and genetic variants of Nox2 subunits have been implicated in pathogenesis of inflammatory bowel disease (IBD). Thus, alterations in the oxidative burst can profoundly impact host defense, yet little is known about regulatory mechanisms that fine-tune this response. Here we report the discovery of regulatory nodes controlling oxidative burst by functional screening of genes within loci linked to human inflammatory disease. Implementing a multi-omics approach, we define transcriptional, metabolic and ubiquitin-cycling nodes controlled by Rbpj, Pfkl and Rnf145, respectively. Furthermore, we implicate Rnf145 in proteostasis of the Nox2 complex by endoplasmic reticulum-associated degradation. Consequently, ablation of Rnf145 in murine macrophages enhances bacterial clearance, and rescues the oxidative burst defects associated with Ncf4 haploinsufficiency.
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