Howard Hughes Medical Institute, Waksman Institute, and Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, NJ 08854, USA.
Cell Rep. 2013 Feb 21;3(2):309-18. doi: 10.1016/j.celrep.2013.01.008. Epub 2013 Feb 8.
The Hippo pathway regulates growth through the transcriptional coactivator Yorkie, but how Yorkie promotes transcription remains poorly understood. We address this by characterizing Yorkie's association with chromatin and by identifying nuclear partners that effect transcriptional activation. Coimmunoprecipitation and mass spectrometry identify GAGA factor (GAF), the Brahma complex, and the Mediator complex as Yorkie-associated nuclear protein complexes. All three are required for Yorkie's transcriptional activation of downstream genes, and GAF and the Brahma complex subunit Moira interact directly with Yorkie. Genome-wide chromatin-binding experiments identify thousands of Yorkie sites, most of which are associated with elevated transcription, based on genome-wide analysis of messenger RNA and histone H3K4Me3 modification. Chromatin binding also supports extensive functional overlap between Yorkie and GAF. Our studies suggest a widespread role for Yorkie as a regulator of transcription and identify recruitment of the chromatin-modifying GAF protein and BRM complex as a molecular mechanism for transcriptional activation by Yorkie.
Hippo 通路通过转录共激活因子 Yorkie 调节生长,但 Yorkie 如何促进转录仍知之甚少。我们通过表征 Yorkie 与染色质的结合以及鉴定影响转录激活的核伙伴关系来解决这个问题。免疫共沉淀和质谱分析鉴定 GAGA 因子 (GAF)、Brahma 复合物和 Mediator 复合物为 Yorkie 相关的核蛋白复合物。这三个复合物都需要 Yorkie 激活下游基因的转录,并且 GAF 和 Brahma 复合物亚基 Moira 与 Yorkie 直接相互作用。全基因组染色质结合实验鉴定了数千个 Yorkie 结合位点,其中大多数与转录升高相关,这是基于信使 RNA 和组蛋白 H3K4Me3 修饰的全基因组分析。染色质结合也支持 Yorkie 和 GAF 之间广泛的功能重叠。我们的研究表明 Yorkie 作为转录调节剂的广泛作用,并确定染色质修饰蛋白 GAF 和 BRM 复合物的招募是 Yorkie 转录激活的分子机制。