Laboratory for Epigenetics Drug Discovery, RIKEN Center for Biosystems Dynamics Research, Yokohama 230-0045, Japan.
Laboratory of Cell Signaling, School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Hachioji, Tokyo 192-0392, Japan.
Proc Natl Acad Sci U S A. 2023 Oct 24;120(43):e2304103120. doi: 10.1073/pnas.2304103120. Epub 2023 Oct 16.
Glioma amplified sequence 41 (GAS41), which has the Yaf9, ENL, AF9, Taf14, and Sas5 (YEATS) domain that recognizes lysine acetylation (Kac), regulates gene expression as a subunit of the SRCAP (SNF2-related CREBBP activator protein) complex that deposits histone H2A.Z at promoters in eukaryotes. The YEATS domains of the proteins AF9 and ENL recognize Kac by hydrogen bonding the aromatic cage to arginine situated just before K9ac or K27ac in the N-terminal tail of histone H3. Curiously, the YEATS domain of GAS41 binds most preferentially to the sequence that contains K14ac of H3 (H3K14ac) but lacks the corresponding arginine. Here, we biochemically and structurally elucidated the molecular mechanism by which GAS41 recognizes H3K14ac. First, stable binding of the GAS41 YEATS domain to H3K14ac required the N terminus of H3 (H3NT). Second, we revealed a pocket in the GAS41 YEATS domain responsible for the H3NT binding by crystallographic and NMR analyses. This pocket is away from the aromatic cage that recognizes Kac and is unique to GAS41 among the YEATS family. Finally, we showed that E109 of GAS41, a residue essential for the formation of the H3NT-binding pocket, was crucial for chromatin occupancy of H2A.Z and GAS41 at H2A.Z-enriched promoter regions. These data suggest that binding of GAS41 to H3NT via its YEATS domain is essential for its intracellular function.
胶质细胞瘤扩增序列 41(GAS41),具有 Yaf9、ENL、AF9、Taf14 和 Sas5(YEATS)结构域,可识别赖氨酸乙酰化(Kac),作为 SRCAP(SNF2 相关 CREBBP 激活蛋白)复合物的亚基调节基因表达,该复合物在真核生物中在启动子处沉积组蛋白 H2A.Z。蛋白质 AF9 和 ENL 的 YEATS 结构域通过将芳香笼与位于组蛋白 H3 N 端尾部 K9ac 或 K27ac 之前的精氨酸氢键结合来识别 Kac。奇怪的是,GAS41 的 YEATS 结构域最优先结合含有 H3K14ac 的序列(H3K14ac),但缺乏相应的精氨酸。在这里,我们从生物化学和结构上阐明了 GAS41 识别 H3K14ac 的分子机制。首先,GAS41 YEATS 结构域与 H3K14ac 的稳定结合需要 H3 的 N 端(H3NT)。其次,我们通过晶体学和 NMR 分析揭示了 GAS41 YEATS 结构域中负责 H3NT 结合的口袋。该口袋远离识别 Kac 的芳香笼,是 YEATS 家族中 GAS41 所特有的。最后,我们表明 GAS41 的 E109,形成 H3NT 结合口袋的必需残基,对于 H2A.Z 和 GAS41 在富含 H2A.Z 的启动子区域的染色质占据至关重要。这些数据表明,GAS41 通过其 YEATS 结构域与 H3NT 的结合对于其细胞内功能至关重要。