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首页> 外文期刊>Nature Communications >Functional genomics identifies negative regulatory nodes controlling phagocyte oxidative burst
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Functional genomics identifies negative regulatory nodes controlling phagocyte oxidative burst

机译:功能基因组学确定负调控节点控制吞噬细胞氧化爆发

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摘要

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.
机译:由Nox2 NADPH氧化酶衍生的活性氧介导的吞噬细胞氧化爆发赋予宿主防御多种细菌和真菌病原体的能力。损害Nox2复合物功能的功能丧失突变导致威胁生命的免疫缺陷,并且Nox2亚基的遗传变异已与炎症性肠病(IBD)的发病机理有关。因此,氧化爆发的改变可以深刻地影响宿主防御,但对调节该反应的调节机制知之甚少。在这里我们报告了通过功能性筛选与人类炎性疾病相关的基因座内基因的功能来控制氧化性爆发的调控节点的发现。实施多组学方法,我们定义了分别由Rbpj,Pfkl和Rnf145控制的转录,代谢和泛素循环节点。此外,我们通过内质网相关降解将Rnf145包含在Nox2复合物的蛋白稳态中。因此,在小鼠巨噬细胞中Rnf145的消融增强了细菌清除,并挽救了与Ncf4单倍体功能不足相关的氧化爆发缺陷。

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