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Unbiased RNAi screen for hepcidin regulators links hepcidin suppression to proliferative Ras/RAF and nutrient-dependent mTOR signaling

机译:Hepcidin调节剂的无偏RNAi筛选将hepcidin抑制作用与增殖性Ras / RAF和营养依赖性mTOR信号传导联系起来

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摘要

The hepatic hormone hepcidin is a key regulator of systemic iron metabolism. Its expression is largely regulated by 2 signaling pathways: the “iron-regulated” bone morphogenetic protein (BMP) and the inflammatory JAK-STAT pathways. To obtain broader insights into cellular processes that modulate hepcidin transcription and to provide a resource to identify novel genetic modifiers of systemic iron homeostasis, we designed an RNA interference (RNAi) screen that monitors hepcidin promoter activity after the knockdown of 19 599 genes in hepatocarcinoma cells. Interestingly, many of the putative hepcidin activators play roles in signal transduction, inflammation, or transcription, and affect hepcidin transcription through BMP-responsive elements. Furthermore, our work sheds light on new components of the transcriptional machinery that maintain steady-state levels of hepcidin expression and its responses to the BMP- and interleukin-6–triggered signals. Notably, we discover hepcidin suppression mediated via components of Ras/RAF MAPK and mTOR signaling, linking hepcidin transcriptional control to the pathways that respond to mitogen stimulation and nutrient status. Thus using a combination of RNAi screening, reverse phase protein arrays, and small molecules testing, we identify links between the control of systemic iron homeostasis and critical liver processes such as regeneration, response to injury, carcinogenesis, and nutrient metabolism.
机译:肝激素铁调素是全身铁代谢的关键调节剂。它的表达在很大程度上受2条信号通路的调节:“铁调节”的骨形态发生蛋白(BMP)和炎症性JAK-STAT通路。为了获得对调节铁调素转录的细胞过程更广泛的了解,并提供鉴定系统铁稳态的新型遗传修饰剂的资源,我们设计了RNA干扰(RNAi)筛选器,可在肝癌细胞中敲低19 genes599基因后监测铁调素启动子的活性。 。有趣的是,许多推定的铁调素激活剂在信号转导,炎症或转录中发挥作用,并通过BMP响应元件影响铁调素的转录。此外,我们的工作揭示了转录机制的新成分,这些成分维持了hepcidin表达的稳态水平及其对BMP和白介素6触发信号的响应。值得注意的是,我们发现了铁调素抑制作用是通过Ras / RAF MAPK和mTOR信号传导的成分介导的,将铁调素的转录控制与响应有丝分裂原刺激和营养状态的途径联系起来。因此,结合使用RNAi筛查,反相蛋白质阵列和小分子测试,我们可以确定系统铁稳态与关键肝过程之间的联系,例如再生,对损伤的反应,致癌作用和营养代谢。

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