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首页> 外文期刊>Developmental cell >The TEAD/TEF family of transcription factor scalloped mediates hippo signaling in organ size control
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The TEAD/TEF family of transcription factor scalloped mediates hippo signaling in organ size control

机译:扇贝形的转录因子TEAD / TEF家族介导河马信号控制器官大小

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The Hippo (Hpo) signaling pathway governs cell growth, proliferation, and apoptosis by controlling key regulatory genes that execute these processes; however, the transcription factor of the pathway has remained elusive. Here we provide evidence that the TEAD/TEF family transcription factor Scalloped (Sd) acts together with the coactivator Yorkie (Yki) to regulate Hpo pathway-responsive genes. Sd and Yki form a transcriptional complex whose activity is inhibited by Hpo signaling. Sd overexpression enhances, whereas its inactivation suppresses, tissue overgrowth caused by Yki overexpression or tumor suppressor mutations in the Hpo pathway. Inactivation of Sd diminishes Hpo target gene expression and reduces organ size, whereas a constitutively active Sd promotes tissue overgrowth. Sd promotes Yki nuclear localization, whereas Hpo signaling retains Yki in the cytoplasm by phosphorylating Yki at S168. Finally, Sd recruits Yki to the enhancer of the pathway-responsive gene diap1, suggesting that diap1 is a direct transcriptional target of the Hpo pathway.
机译:Hippo(Hpo)信号通路通过控制执行这些过程的关键调控基因来控制细胞的生长,增殖和凋亡。然而,该途径的转录因子仍然难以捉摸。在这里,我们提供证据表明扇贝(Sd)的TEAD / TEF家族转录因子(Sd)与辅助激活剂Yorkie(Yki)共同调节Hpo途径反应性基因。 Sd和Yki形成转录复合物,其活性受Hpo信号传导抑制。 Sd的过度表达增强,而其失活则抑制由Yki过度表达或Hpo途径中的肿瘤抑制基因突变引起的组织过度生长。 Sd的失活会减少Hpo靶基因的表达并减小器官的大小,而组成型活性Sd会促进组织过度生长。 Sd促进Yki核定位,而Hpo信号通过在S168磷酸化Yki将Yki保留在细胞质中。最后,Sd将Yki募集到途径反应基因diap1的增强子,表明diap1是Hpo途径的直接转录靶标。

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