Southall Stacey M, Wong Poon-Sheng, Odho Zain, Roe S Mark, Wilson Jon R
Institute of Cancer Research, Chester Beatty Laboratories, Chelsea, London, UK.
Mol Cell. 2009 Jan 30;33(2):181-91. doi: 10.1016/j.molcel.2008.12.029.
The mixed-lineage leukemia protein MLL1 is a transcriptional regulator with an essential role in early development and hematopoiesis. The biological function of MLL1 is mediated by the histone H3K4 methyltransferase activity of the carboxyl-terminal SET domain. We have determined the crystal structure of the MLL1 SET domain in complex with cofactor product AdoHcy and a histone H3 peptide. This structure indicates that, in order to form a well-ordered active site, a highly variable but essential component of the SET domain must be repositioned. To test this idea, we compared the effect of the addition of MLL complex members on methyltransferase activity and show that both RbBP5 and Ash2L but not Wdr5 stimulate activity. Additionally, we have determined the effect of posttranslational modifications on histone H3 residues downstream and upstream from the target lysine and provide a structural explanation for why H3T3 phosphorylation and H3K9 acetylation regulate activity.
混合谱系白血病蛋白MLL1是一种转录调节因子,在早期发育和造血过程中起关键作用。MLL1的生物学功能由其羧基末端SET结构域的组蛋白H3K4甲基转移酶活性介导。我们已经确定了MLL1 SET结构域与辅因子产物AdoHcy和组蛋白H3肽复合物的晶体结构。该结构表明,为了形成一个有序的活性位点,SET结构域中一个高度可变但必不可少的组件必须重新定位。为了验证这一想法,我们比较了添加MLL复合物成员对甲基转移酶活性的影响,结果表明RbBP5和Ash2L均能刺激活性,而Wdr5则不能。此外,我们还确定了翻译后修饰对靶赖氨酸上下游组蛋白H3残基的影响,并为H3T3磷酸化和H3K9乙酰化为何调节活性提供了结构解释。