Laval University Cancer Research Center, Hôtel-Dieu de Québec (CHUQ), Quebec City, Québec G1R 2J6, Canada;
Genes Dev. 2013 Sep 15;27(18):2009-24. doi: 10.1101/gad.223396.113.
Histone acetyltransferases (HATs) assemble into multisubunit complexes in order to target distinct lysine residues on nucleosomal histones. Here, we characterize native HAT complexes assembled by the BRPF family of scaffold proteins. Their plant homeodomain (PHD)-Zn knuckle-PHD domain is essential for binding chromatin and is restricted to unmethylated H3K4, a specificity that is reversed by the associated ING subunit. Native BRPF1 complexes can contain either MOZ/MORF or HBO1 as catalytic acetyltransferase subunit. Interestingly, while the previously reported HBO1 complexes containing JADE scaffold proteins target histone H4, the HBO1-BRPF1 complex acetylates only H3 in chromatin. We mapped a small region to the N terminus of scaffold proteins responsible for histone tail selection on chromatin. Thus, alternate choice of subunits associated with HBO1 can switch its specificity between H4 and H3 tails. These results uncover a crucial new role for associated proteins within HAT complexes, previously thought to be intrinsic to the catalytic subunit.
组蛋白乙酰转移酶(HATs)组装成多亚基复合物,以针对核小体组蛋白上的不同赖氨酸残基。在这里,我们描述了由 BRPF 家族支架蛋白组装的天然 HAT 复合物。它们的植物同源域(PHD)-Zn 指-PHD 结构域对于结合染色质是必需的,并且仅限于未甲基化的 H3K4,这种特异性被相关的 ING 亚基逆转。天然 BRPF1 复合物可以包含 MOZ/MORF 或 HBO1 作为催化乙酰转移酶亚基。有趣的是,虽然先前报道的含有 JADE 支架蛋白的 HBO1 复合物靶向组蛋白 H4,但 HBO1-BRPF1 复合物仅在染色质中乙酰化 H3。我们在支架蛋白的 N 端映射了一个小区域,该区域负责在染色质上选择组蛋白尾部。因此,与 HBO1 相关的亚基的替代选择可以在 H4 和 H3 尾部之间切换其特异性。这些结果揭示了 HAT 复合物中相关蛋白的一个关键新作用,这些蛋白以前被认为是催化亚基所固有的。