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Emerging Transcriptional Mechanisms in the Regulation of Epithelial to Mesenchymal Transition and Cellular Plasticity in the Kidney

机译:肾脏上皮向间质转化和细胞可塑性调节中的新兴转录机制。

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Notwithstanding controversies over the role of epithelial to mesenchymal transition in the pathogenesis of renal disease, the last decade has witnessed a revolution in our understanding of the regulation of renal cell plasticity. Significant parallels undoubtedly exist between ontogenic processes and the initiation and propagation of damage in the diseased kidney as evidenced by the reactivation of developmental programmes of gene expression, in particular with respect to TGFβ superfamily signaling. Indeed, multiple signaling pathways converge on a complex transcriptional regulatory nexus that additionally involves epigenetic activator and repressor mechanisms and microRNA regulatory networks that control renal cell plasticity. It is becoming increasingly apparent that differentiated cells can acquire an undifferentiated state akin to “stemness” which is leading us towards new models of complex cell behaviors and interactions. Here we discuss the latest findings that delineate new and novel interactions between this transcriptional regulatory network and highlight a hitherto poorly recognized role for the Polycomb Repressive Complex (PRC2) in the regulation of renal cell plasticity. A comprehensive understanding of how external stimuli interact with the epigenetic control of gene expression, in normal and diseased contexts, establishes a new therapeutic paradigm to promote the resolution of renal injury and regression of fibrosis.
机译:尽管在肾病的发病机理中上皮向间质转化的作用存在争议,但最近十年见证了我们对肾细胞可塑性调节的理解的一场革命。毫无疑问,在个体发育过程与病变肾脏的损害的开始和传播之间存在着显着的相似之处,这是由基因表达的发育程序的重新激活所证实的,特别是在TGFβ超家族信号传导方面。实际上,多种信号传导途径汇聚在复杂的转录调节联系上,该联系还涉及表观遗传激活剂和阻遏剂机制以及控制肾细胞可塑性的microRNA调节网络。越来越明显的是,分化的细胞可以获得类似于“干性”的未分化状态,这使我们走向了复杂细胞行为和相互作用的新模型。在这里,我们讨论了最新的发现,这些发现描述了这种转录调节网络之间的新的和新颖的相互作用,并突出了迄今为止对多梳抑制复合物(PRC2)在调节肾细胞可塑性中的作用的认识。在正常和患病情况下,对外部刺激如何与基因表达的表观遗传控制相互作用的全面理解,建立了一种新的治疗范例,以促进肾脏损伤的消退和纤维化的消退。

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