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Chromatin structure regulation in transforming growth factor-beta-directed epithelial-mesenchymal transition.

机译:染色质结构调节转化生长因子-β-定向上皮-间质转化。

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Epithelial-mesenchymal transitions (EMTs) occur in organogenesis throughout embryonic development and are recapitulated during epithelial tissue injury and in carcinoma progression. EMTs are regulated by complex, precisely orchestrated cell signaling and gene expression networks, with the participation of key developmental pathways. Here we review context-dependent modules of gene regulation by hairy/enhancer-of-split-related (H/E(spl)) repressors downstream of transforming growth factor-beta (TGF-beta)/Smad and Notch signals in EMT and in other phenotype transitions such as differentiation and cancer. Based on multiple models of disease-related EMT, we propose that Polycomb group epigenetic silencers and histone-lysine methyl-transferases EZH1 and EZH2 are candidate targets of H/E(spl)-mediated transcriptional repression, in a process accompanied by replacement of modified core histone H3 with de novo synthesized histone variant H3.3B. Finally, we discuss the potential significance of this scenario for EMT in the light of recent findings on gene regulation by histone modifications and chromatin structure changes.
机译:上皮-间质转化(EMT)发生在整个胚胎发育的器官发生过程中,并在上皮组织损伤和癌变过程中重新概括。 EMT受复杂的,精确协调的细胞信号传导和基因表达网络调节,并参与关键的发育途径。在这里,我们回顾了EMT和EMT中转化生长因子-β(TGF-β)/ Smad和Notch信号下游的毛发/分裂相关(H / E(spl))阻遏物基因调控的上下文相关模块。其他表型转变,例如分化和癌症。基于与疾病相关的EMT的多种模型,我们建议Polycomb组表观遗传沉默子和组蛋白赖氨酸甲基转移酶EZH1和EZH2是H / E(spl)介导的转录抑制的候选靶标,在此过程中将修饰的核心组蛋白H3与从头合成的组蛋白变体H3.3B。最后,根据组蛋白修饰和染色质结构改变对基因调控的最新发现,我们讨论了该场景对EMT的潜在意义。

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