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YAP 通过控制动态增强子转录暂停释放来驱动生长。

YAP Drives Growth by Controlling Transcriptional Pause Release from Dynamic Enhancers.

作者信息

Galli Giorgio G, Carrara Matteo, Yuan Wei-Chien, Valdes-Quezada Christian, Gurung Basanta, Pepe-Mooney Brian, Zhang Tinghu, Geeven Geert, Gray Nathanael S, de Laat Wouter, Calogero Raffaele A, Camargo Fernando D

机构信息

Stem Cell Program, Boston Children's Hospital, Boston, MA 02115, USA; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA 02138, USA; Harvard Stem Cell Institute, Boston, MA 02115, USA.

Molecular Biotechnology Center, Department of Biotechnology and Health Sciences, University of Torino, Torino 10126, Italy.

出版信息

Mol Cell. 2015 Oct 15;60(2):328-37. doi: 10.1016/j.molcel.2015.09.001. Epub 2015 Oct 1.

Abstract

The Hippo/YAP signaling pathway is a crucial regulator of tissue growth, stem cell activity, and tumorigenesis. However, the mechanism by which YAP controls transcription remains to be fully elucidated. Here, we utilize global chromatin occupancy analyses to demonstrate that robust YAP binding is restricted to a relatively small number of distal regulatory elements in the genome. YAP occupancy defines a subset of enhancers and superenhancers with the highest transcriptional outputs. YAP modulates transcription from these elements predominantly by regulating promoter-proximal polymerase II (Pol II) pause release. Mechanistically, YAP interacts and recruits the Mediator complex to enhancers, allowing the recruitment of the CDK9 elongating kinase. Genetic and chemical perturbation experiments demonstrate the requirement for Mediator and CDK9 in YAP-driven phenotypes of overgrowth and tumorigenesis. Our results here uncover the molecular mechanisms employed by YAP to exert its growth and oncogenic functions, and suggest strategies for intervention.

摘要

河马/Yes相关蛋白(YAP)信号通路是组织生长、干细胞活性和肿瘤发生的关键调节因子。然而,YAP控制转录的机制仍有待充分阐明。在此,我们利用全基因组染色质占据分析来证明,强大的YAP结合仅限于基因组中相对较少数量的远端调控元件。YAP占据定义了具有最高转录输出的增强子和超级增强子子集。YAP主要通过调节启动子近端聚合酶II(Pol II)的暂停释放来调节这些元件的转录。从机制上讲,YAP与中介体复合物相互作用并将其招募到增强子,从而允许招募CDK9延长激酶。遗传和化学扰动实验证明了中介体和CDK9在YAP驱动的过度生长和肿瘤发生表型中的必要性。我们在此的结果揭示了YAP发挥其生长和致癌功能所采用的分子机制,并提出了干预策略。

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