Saksouk Nehmé, Avvakumov Nikita, Champagne Karen S, Hung Tiffany, Doyon Yannick, Cayrou Christelle, Paquet Eric, Ullah Mukta, Landry Anne-Julie, Côté Valérie, Yang Xiang-Jiao, Gozani Or, Kutateladze Tatiana G, Côté Jacques
Laval University Cancer Research Center, Hôtel-Dieu de Québec (CHUQ), Quebec City, QC, Canada.
Mol Cell. 2009 Jan 30;33(2):257-65. doi: 10.1016/j.molcel.2009.01.007.
The HBO1 HAT protein is the major source of histone H4 acetylation in vivo and has been shown to play critical roles in gene regulation and DNA replication. A distinctive characteristic of HBO1 HAT complexes is the presence of three PHD finger domains in two different subunits: tumor suppressor proteins ING4/5 and JADE1/2/3. Biochemical and functional analyses indicate that these domains interact with histone H3 N-terminal tail region, but with a different specificity toward its methylation status. Their combinatorial action is essential in regulating chromatin binding and substrate specificity of HBO1 complexes, as well as cell growth. Importantly, localization analyses on the human genome indicate that HBO1 complexes are enriched throughout the coding regions of genes, supporting a role in transcription elongation. These results underline the importance and versatility of PHD finger domains in regulating chromatin association and histone modification crosstalk within a single protein complex.
HBO1组蛋白乙酰转移酶(HAT)蛋白是体内组蛋白H4乙酰化的主要来源,并且已被证明在基因调控和DNA复制中发挥关键作用。HBO1 HAT复合物的一个显著特征是在两个不同的亚基中存在三个植物同源结构域(PHD)指状结构域:肿瘤抑制蛋白ING4/5和JADE1/2/3。生化和功能分析表明,这些结构域与组蛋白H3的N端尾部区域相互作用,但对其甲基化状态具有不同的特异性。它们的组合作用对于调节HBO1复合物的染色质结合和底物特异性以及细胞生长至关重要。重要的是,对人类基因组的定位分析表明,HBO1复合物在基因的整个编码区域中富集,这支持了其在转录延伸中的作用。这些结果强调了PHD指状结构域在调节单个蛋白质复合物内的染色质结合和组蛋白修饰串扰方面的重要性和多功能性。