Hsu Chih-Chao, Zhao Dan, Shi Jiejun, Peng Danni, Guan Haipeng, Li Yuanyuan, Huang Yaling, Wen Hong, Li Wei, Li Haitao, Shi Xiaobing
1Department of Epigenetics and Molecular Carcinogenesis and Center for Cancer Epigenetics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030 USA.
2MOE Key Laboratory of Protein Sciences, Beijing Advanced Innovation Center for Structural Biology, Department of Basic Medical Sciences, School of Medicine, Tsinghua University, Beijing, 100084 China.
Cell Discov. 2018 Jun 12;4:28. doi: 10.1038/s41421-018-0027-0. eCollection 2018.
The histone variant H2A.Z is essential for maintaining embryonic stem cell (ESC) identity in part by keeping developmental genes in a poised bivalent state. However, how H2A.Z is deposited into the bivalent domains remains unknown. In mammals, two chromatin remodeling complexes, Tip60/p400 and SRCAP, exchange the canonical histone H2A for H2A.Z in the chromatin. Here we show that Glioma Amplified Sequence 41 (Gas41), a shared subunit of the two H2A.Z-depositing complexes, functions as a reader of histone lysine acetylation and recruits Tip60/p400 and SRCAP to deposit H2A.Z into specific chromatin regions including bivalent domains. The YEATS domain of Gas41 bound to acetylated histone H3K27 and H3K14 both in vitro and in cells. The crystal structure of the Gas41 YEATS domain in complex with the H3K27ac peptide revealed that, similar to the AF9 and ENL YEATS domains, Gas41 YEATS forms a serine-lined aromatic cage for acetyllysine recognition. Consistently, mutations in the aromatic residues of the Gas41 YEATS domain abrogated the interaction. In mouse ESCs, knockdown of Gas41 led to flattened morphology of ESC colonies, as the result of derepression of differentiation genes. Importantly, the abnormal morphology was rescued by expressing wild-type Gas41, but not the YEATS domain mutated counterpart that does not recognize histone acetylation. Mechanically, we found that Gas41 depletion led to reduction of H2A.Z levels and a concomitant reduction of H3K27me3 levels on bivalent domains. Together, our study reveals an essential role of the Gas41 YEATS domain in linking histone acetylation to H2A.Z deposition and maintenance of ESC identity.
组蛋白变体H2A.Z对于维持胚胎干细胞(ESC)特性至关重要,部分原因是它能使发育基因保持在一种平衡的二价状态。然而,H2A.Z如何沉积到二价结构域中仍不清楚。在哺乳动物中,两种染色质重塑复合物Tip60/p400和SRCAP,会在染色质中用H2A.Z替换经典组蛋白H2A。在此,我们表明胶质瘤扩增序列41(Gas41),这两种H2A.Z沉积复合物的一个共享亚基,作为组蛋白赖氨酸乙酰化的读取器,招募Tip60/p400和SRCAP将H2A.Z沉积到特定的染色质区域,包括二价结构域。Gas41的YEATS结构域在体外和细胞内都能与乙酰化组蛋白H3K27和H3K14结合。Gas41 YEATS结构域与H3K27ac肽复合物的晶体结构显示,与AF9和ENL YEATS结构域类似,Gas41 YEATS形成了一个由丝氨酸排列的芳香笼用于识别乙酰赖氨酸。一致地,Gas41 YEATS结构域芳香族残基的突变消除了这种相互作用。在小鼠胚胎干细胞中,敲低Gas41导致胚胎干细胞集落形态变扁平,这是分化基因去抑制的结果。重要的是,表达野生型Gas41可挽救异常形态,但表达不识别组蛋白乙酰化的YEATS结构域突变体则不能。从机制上讲,我们发现Gas41缺失导致二价结构域上H2A.Z水平降低以及H3K27me3水平随之降低。总之,我们的研究揭示了Gas41 YEATS结构域在将组蛋白乙酰化与H2A.Z沉积以及维持胚胎干细胞特性方面的重要作用。