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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Regulation of Toll Signaling and Inflammation by β-Arrestin and the SUMO Protease Ulp1
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Regulation of Toll Signaling and Inflammation by β-Arrestin and the SUMO Protease Ulp1

机译:β-抑制蛋白和SUMO蛋白酶Ulp1调节通行费信号和炎症

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The Toll signaling pathway has a highly conserved function in innate immunity and is regulated by multiple factors that fine tune its activity. One such factor is β-arrestin Kurtz (Krz), which we previously implicated in the inhibition of developmental Toll signaling in the Drosophila melanogaster embryo. Another level of controlling Toll activity and immune system homeostasis is by protein sumoylation. In this study, we have uncovered a link between these two modes of regulation and show that Krz affects sumoylation via a conserved protein interaction with a SUMO protease, Ulp1. Loss of function of [krz][1] or [Ulp1][2] in Drosophila larvae results in a similar inflammatory phenotype, which is manifested as increased lamellocyte production; melanotic mass formation; nuclear accumulation of Toll pathway transcriptional effectors, Dorsal and Dif; and expression of immunity genes, such as [Drosomycin][3] . Moreover, mutations in [krz][1] and [Ulp1][2] show dosage-sensitive synergistic genetic interactions, suggesting that these two proteins are involved in the same pathway. Using Dorsal sumoylation as a readout, we found that altering Krz levels can affect the efficiency of SUMO deconjugation mediated by Ulp1. Our results demonstrate that β-arrestin controls Toll signaling and systemic inflammation at the level of sumoylation. [1]: http://flybase.org/reports/FBgn0040206.html [2]: http://flybase.org/reports/FBgn0027603.html [3]: http://flybase.org/reports/FBgn0010381.html
机译:Toll信号转导途径在先天免疫中具有高度保守的功能,并受多种调节其活性的因素调节。一种这样的因子是β-arrestinKurtz(Krz),我们先前曾暗示其抑制果蝇胚胎果蝇的Toll信号传导。控制通行费活动和免疫系统动态平衡的另一个水平是蛋白质磺酰化。在这项研究中,我们发现了这两种调节模式之间的联系,并表明Krz通过与SUMO蛋白酶Ulp1的保守蛋白相互作用影响sumoylation。果蝇幼虫中[krz] [1]或[Ulp1] [2]的功能丧失导致相似​​的炎症表型,表现为单核细胞增加。黑色素形成Toll通路转录效应子Dorsal和Dif的核积累;和免疫力基因的表达,例如[果霉素] [3]。此外,[krz] [1]和[Ulp1] [2]中的突变显示出剂量敏感的协同遗传相互作用,表明这两种蛋白参与同一途径。使用背侧SUMO化作为读出,我们发现改变Krz水平可以影响由Ulp1介导的SUMO解偶联的效率。我们的结果表明,β-arrestin可在Sumolation水平控制Toll信号传导和全身性炎症。 [1]:http://flybase.org/reports/FBgn0040206.html [2]:http://flybase.org/reports/FBgn0027603.html [3]:http://flybase.org/reports/FBgn0010381。 html

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