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Repression of transcription by the glucocorticoid receptor: A parsimonious model for the genomics era

机译:糖皮质激素受体的转录抑制:基因组学时的一个解析模型

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摘要

Glucocorticoids are potent anti-inflammatory drugs that are used to treat an extraordinary range of human disease, including COVID-19, underscoring the ongoing importance of understanding their molecular mechanisms. Early studies of GR signaling led to broad acceptance of models in which glucocorticoid receptor (GR) monomers tether repressively to inflammatory transcription factors, thus abrogating inflammatory gene expression. However, newer data challenge this core concept and present an exciting opportunity to reframe our understanding of GR signaling. Here, we present an alternate, two-part model for transcriptional repression by glucocorticoids. First, widespread GR-mediated induction of transcription results in rapid, primary repression of inflammatory gene transcription and associated enhancers through competition-based mechanisms. Second, a subset of GR-induced genes, including targets that are regulated in coordination with inflammatory transcription factors such as NF-κB, exerts secondary repressive effects on inflammatory gene expression. Within this framework, emerging data indicate that the gene set regulated through the cooperative convergence of GR and NF-κB signaling is central to the broad clinical effectiveness of glucocorticoids in terminating inflammation and promoting tissue repair.
机译:糖皮质激素是有效的抗炎药,用于治疗非凡的人类疾病范围,包括Covid-19,强调持续了解其分子机制的重要性。 GR信号的早期研究导致了广泛接受糖皮质激素受体(GR)单体压抑的模型对炎症转录因子的模型,从而消除了炎症基因表达。然而,较新的数据挑战这一核心概念并呈现了一个令人兴奋的机会,以重复我们对GR信令的理解。在这里,我们介绍了糖皮质激素的转录抑制的替代两部分模型。首先,广泛的Gr介导的转录诱导导致通过基于竞争的机制快速,初始抑制炎症基因转录和相关的增强剂。其次,将GR诱导基因的子集,包括与炎症转录因子(如NF-κB)协调调节的靶标对炎症基因表达产生次要抑制作用。在该框架内,新兴数据表明通过GR和NF-κB信号传导的协同融合调节的基因集是糖皮质激素在终止炎症和促进组织修复方面的广泛临床疗效的核心。

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