Cheng Xue, Auger Andréanne, Altaf Mohammed, Drouin Simon, Paquet Eric, Utley Rhea T, Robert François, Côté Jacques
St-Patrick Research Group in Basic Oncology, Laval University Cancer Research Center, Centre de Recherche du CHU de Québec-Axe Oncologie, Hôtel-Dieu de Québec, Quebec City, Quebec, Canada.
Chromatin and Genomic Expression Research Unit, Institut de Recherches Cliniques de Montréal (IRCM), Montréal, Québec, Canada.
Eukaryot Cell. 2015 Jun;14(6):535-44. doi: 10.1128/EC.00004-15. Epub 2015 Apr 3.
Proper modulation of promoter chromatin architecture is crucial for gene regulation in order to precisely and efficiently orchestrate various cellular activities. Previous studies have identified the stimulatory effect of the histone-modifying complex NuA4 on the incorporation of the histone variant H2A.Z (Htz1) at the PHO5 promoter (A. Auger, L. Galarneau, M. Altaf, A. Nourani, Y. Doyon, R. T. Utley, D. Cronier, S. Allard, and J. Côté, Mol Cell Biol 28:2257-2270, 2008, http://dx.doi.org/10.1128/MCB.01755-07). In vitro studies with a reconstituted system also indicated an intriguing cross talk between NuA4 and the H2A.Z-loading complex, SWR-C (M. Altaf, A. Auger, J. Monnet-Saksouk, J. Brodeur, S. Piquet, M. Cramet, N. Bouchard, N. Lacoste, R. T. Utley, L. Gaudreau, J. Côté, J Biol Chem 285:15966-15977, 2010, http://dx.doi.org/10.1074/jbc.M110.117069). In this work, we investigated the role of the NuA4 scaffold subunit Eaf1 in global gene expression and genome-wide incorporation of Htz1. We found that loss of Eaf1 affects Htz1 levels mostly at the promoters that are normally highly enriched in the histone variant. Analysis of eaf1 mutant cells by expression array unveiled a relationship between NuA4 and the gene network implicated in the purine biosynthesis pathway, as EAF1 deletion cripples induction of several ADE genes. NuA4 directly interacts with Bas1 activation domain, a key transcription factor of adenine genes. Chromatin immunoprecipitation (ChIP) experiments demonstrate that nucleosomes on the inactive ADE17 promoter are acetylated already by NuA4 and enriched in Htz1. Upon derepression, these poised nucleosomes respond rapidly to activate ADE gene expression in a mechanism likely reminiscent of the PHO5 promoter, leading to nucleosome disassembly. These detailed molecular events depict a specific case of cross talk between NuA4-dependent acetylation and incorporation of histone variant Htz1, presetting the chromatin structure over ADE promoters for subsequent chromatin remodeling and activated transcription.
启动子染色质结构的适当调控对于基因调控至关重要,以便精确且高效地协调各种细胞活动。先前的研究已确定组蛋白修饰复合物NuA4对PHO5启动子处组蛋白变体H2A.Z(Htz1)掺入的刺激作用(A.奥热、L.加拉尔诺、M.阿尔塔夫、A.努拉尼、Y.多永、R.T.厄特利、D.克罗尼耶、S.阿拉德和J.科泰,《分子细胞生物学》28:2257 - 2270,2008,http://dx.doi.org/10.1128/MCB.01755 - 07)。用重组系统进行的体外研究也表明NuA4与H2A.Z加载复合物SWR - C之间存在有趣的相互作用(M.阿尔塔夫、A.奥热、J.莫内 - 萨克苏克、J.布罗德厄、S.皮凯、M.克拉梅、N.布沙尔、N.拉科斯特、R.T.厄特利、L.高德罗、J.科泰,《生物化学杂志》285:15966 - 15977,2010,http://dx.doi.org/10.1074/jbc.M110.117069)。在这项工作中,我们研究了NuA4支架亚基Eaf1在全局基因表达和全基因组Htz1掺入中的作用。我们发现Eaf1的缺失主要影响通常富含该组蛋白变体的启动子处的Htz1水平。通过表达阵列对eaf1突变细胞的分析揭示了NuA4与嘌呤生物合成途径相关基因网络之间的关系,因为EAF1缺失削弱了几个ADE基因的诱导。NuA4直接与腺嘌呤基因的关键转录因子Bas1激活结构域相互作用。染色质免疫沉淀(ChIP)实验表明,失活的ADE17启动子上的核小体已被NuA4乙酰化并富含Htz1。在去阻遏后,这些处于就绪状态的核小体通过一种可能类似于PHO5启动子的机制快速响应以激活ADE基因表达,导致核小体解体。这些详细的分子事件描绘了NuA4依赖性乙酰化与组蛋白变体Htz1掺入之间相互作用的一个具体案例,预先设定了ADE启动子上的染色质结构,以便随后进行染色质重塑和激活转录。