Nourani A, Doyon Y, Utley R T, Allard S, Lane W S, Côté J
Laval University Cancer Research Center, Hôtel-Dieu de Québec, Quebec City, Quebec G1R 2J6, Canada.
Mol Cell Biol. 2001 Nov;21(22):7629-40. doi: 10.1128/MCB.21.22.7629-7640.2001.
The yeast NuA4 complex is a histone H4 and H2A acetyltransferase involved in transcription regulation and essential for cell cycle progression. We identify here a novel subunit of the complex, Yng2p, a plant homeodomain (PHD)-finger protein homologous to human p33/ING1, which has tumor suppressor activity and is essential for p53 function. Mass spectrometry, immunoblotting, and immunoprecipitation experiments confirm the stable stoichiometric association of this protein with purified NuA4. Yeast cells harboring a deletion of the YNG2 gene show severe growth phenotype and have gene-specific transcription defects. NuA4 complex purified from the mutant strain is low in abundance and shows weak histone acetyltransferase activity. We demonstrate conservation of function by the requirement of Yng2p for p53 to function as a transcriptional activator in yeast. Accordingly, p53 interacts with NuA4 in vitro and in vivo, an interaction reminiscent of the p53-ING1 physical link in human cells. The growth defect of Delta yng2 cells can be rescued by the N-terminal part of the protein, lacking the PHD-finger. While Yng2 PHD-finger is not required for p53 interaction, it is necessary for full expression of the p53-responsive gene and other NuA4 target genes. Transcriptional activation by p53 in vivo is associated with targeted NuA4-dependent histone H4 hyperacetylation, while histone H3 acetylation levels remain unchanged. These results emphasize the essential role of the NuA4 complex in the control of cell proliferation through gene-specific transcription regulation. They also suggest that regulation of mammalian cell proliferation by p53-dependent transcriptional activation functions through recruitment of an ING1-containing histone acetyltransferase complex.
酵母NuA4复合物是一种组蛋白H4和H2A乙酰转移酶,参与转录调控,对细胞周期进程至关重要。我们在此鉴定出该复合物的一个新亚基Yng2p,它是一种与人类p33/ING1同源的植物同源结构域(PHD)-指蛋白,具有肿瘤抑制活性,对p53功能至关重要。质谱分析、免疫印迹和免疫沉淀实验证实了该蛋白与纯化的NuA4稳定的化学计量学关联。缺失YNG2基因的酵母细胞表现出严重的生长表型,并存在基因特异性转录缺陷。从突变菌株中纯化的NuA4复合物丰度较低,组蛋白乙酰转移酶活性较弱。我们通过Yng2p对酵母中p53作为转录激活因子发挥功能的需求证明了功能的保守性。因此,p53在体外和体内均与NuA4相互作用,这种相互作用让人联想到人类细胞中p53-ING1的物理联系。Δyng2细胞的生长缺陷可通过该蛋白缺乏PHD-指的N端部分得到挽救。虽然Yng2 PHD-指对于p53相互作用不是必需的,但它对于p53反应基因和其他NuA4靶基因的充分表达是必需的。p53在体内的转录激活与靶向的NuA4依赖性组蛋白H4高度乙酰化相关,而组蛋白H3乙酰化水平保持不变。这些结果强调了NuA4复合物在通过基因特异性转录调控控制细胞增殖中的重要作用。它们还表明,p53依赖性转录激活对哺乳动物细胞增殖的调控通过募集含ING1的组蛋白乙酰转移酶复合物发挥作用。