Auger Andréanne, Galarneau Luc, Altaf Mohammed, Nourani Amine, Doyon Yannick, Utley Rhea T, Cronier Dominique, Allard Stéphane, Côté Jacques
Laval University Cancer Research Center, Hôtel-Dieu de Québec (CHUQ), 9 McMahon St., Quebec City, Quebec G1R 2J6, Canada.
Mol Cell Biol. 2008 Apr;28(7):2257-70. doi: 10.1128/MCB.01755-07. Epub 2008 Jan 22.
Eaf1 (for Esa1-associated factor 1) and Eaf2 have been identified as stable subunits of NuA4, a yeast histone H4/H2A acetyltransferase complex implicated in gene regulation and DNA repair. While both SWI3-ADA2-N-CoR-TF IIIB domain-containing proteins are required for normal cell cycle progression, their depletion does not affect the global Esa1-dependent acetylation of histones. In contrast to all other subunits, Eaf1 is found exclusively associated with the NuA4 complex in vivo. It serves as a platform that coordinates the assembly of functional groups of subunits into the native NuA4 complex. Eaf1 shows structural similarities with human p400/Domino, a subunit of the NuA4-related TIP60 complex. On the other hand, p400 also possesses an SWI2/SNF2 family ATPase domain that is absent from the yeast NuA4 complex. This domain is highly related to the yeast Swr1 protein, which is responsible for the incorporation of histone variant H2AZ in chromatin. Since all of the components of the TIP60 complex are homologous to SWR1 or NuA4 subunits, we proposed that the human complex corresponds to a physical merge of two yeast complexes. p400 function in TIP60 then would be accomplished in yeast by cooperation between SWR1 and NuA4. In agreement with such a model, NuA4 and SWR1 mutants show strong genetic interactions, NuA4 affects histone H2AZ incorporation/acetylation in vivo, and both preset the PHO5 promoter for activation. Interestingly, the expression of a chimeric Eaf1-Swr1 protein recreates a single human-like complex in yeast cells. Our results identified the key central subunit for the structure and functions of the NuA4 histone acetyltransferase complex and functionally linked this activity with the histone variant H2AZ from yeast to human cells.
Eaf1(Esa1相关因子1)和Eaf2已被鉴定为NuA4的稳定亚基,NuA4是一种参与基因调控和DNA修复的酵母组蛋白H4/H2A乙酰转移酶复合物。虽然含SWI3-ADA2-N-CoR-TF IIIB结构域的两种蛋白质对于正常细胞周期进程是必需的,但它们的缺失并不影响组蛋白的整体Esa1依赖性乙酰化。与所有其他亚基不同,Eaf1在体内仅与NuA4复合物相关联。它作为一个平台,协调亚基功能基团组装成天然的NuA4复合物。Eaf1与人类p400/Domino结构相似,p400/Domino是与NuA4相关的TIP60复合物的一个亚基。另一方面,p400还拥有酵母NuA4复合物中不存在的SWI2/SNF2家族ATP酶结构域。该结构域与酵母Swr1蛋白高度相关,Swr1蛋白负责在染色质中掺入组蛋白变体H2AZ。由于TIP60复合物的所有组分都与SWR1或NuA4亚基同源,我们推测人类复合物相当于两种酵母复合物的物理融合。那么p400在TIP60中的功能在酵母中可通过SWR1和NuA4之间的协作来完成。与这种模型一致,NuA4和SWR1突变体表现出强烈的遗传相互作用,NuA4在体内影响组蛋白H2AZ的掺入/乙酰化,并且两者都为PHO5启动子的激活做好准备。有趣的是,嵌合Eaf1-Swr1蛋白的表达在酵母细胞中重建了一种单一的类人复合物。我们的结果确定了NuA4组蛋白乙酰转移酶复合物结构和功能的关键核心亚基,并将这种活性从酵母到人类细胞与组蛋白变体H2AZ功能联系起来。