Department of Biochemistry and Molecular Biology, The University of British Columbia, Vancouver, British Columbia, Canada.
St-Patrick Research Group in Basic Oncology, Laval University Cancer Research Center, Oncology Axis-CHU de Québec-UL Research Center, Quebec City, Quebec, Canada.
Mol Cell Biol. 2018 Apr 16;38(9). doi: 10.1128/MCB.00570-17. Print 2018 May 1.
Conserved from yeast to humans, the NuA4 histone acetyltransferase is a large multisubunit complex essential for cell viability through the regulation of gene expression, genome maintenance, metabolism, and cell fate during development and stress. How the different NuA4 subunits work in concert with one another to perform these diverse functions remains unclear, and addressing this central question requires a comprehensive understanding of NuA4's molecular architecture and subunit organization. We have determined the structure of fully assembled native yeast NuA4 by single-particle electron microscopy. Our data revealed that NuA4 adopts a trilobal overall architecture, with each of the three lobes constituted by one or two functional modules. By performing cross-linking coupled to mass spectrometry analysis and protein interaction studies, we further mapped novel intermolecular interfaces within NuA4. Finally, we combined these new data with other known structural information of NuA4 subunits and subassemblies to construct a multiscale model to illustrate how the different NuA4 subunits and modules are spatially arranged. This model shows that the multiple chromatin reader domains are clustered together around the catalytic core, suggesting that NuA4's multimodular architecture enables it to engage in multivalent interactions with its nucleosome substrate.
从酵母到人类,NuA4 组蛋白乙酰转移酶是一种大型多亚基复合物,通过调节基因表达、基因组维护、代谢和发育及应激过程中的细胞命运,对细胞活力至关重要。不同的 NuA4 亚基如何协同工作以执行这些不同的功能尚不清楚,解决这个核心问题需要全面了解 NuA4 的分子结构和亚基组织。我们通过单颗粒电子显微镜确定了全组装的天然酵母 NuA4 的结构。我们的数据显示,NuA4 采用三叶整体结构,每个三叶由一个或两个功能模块构成。通过进行交联结合质谱分析和蛋白质相互作用研究,我们进一步在 NuA4 内映射了新的分子间界面。最后,我们将这些新数据与其他已知的 NuA4 亚基和亚基组装体的结构信息结合起来,构建了一个多尺度模型来阐明不同的 NuA4 亚基和模块是如何在空间上排列的。该模型表明,多个染色质读取域聚集在催化核心周围,这表明 NuA4 的多模块结构使其能够与核小体底物进行多价相互作用。