Dou Yali, Milne Thomas A, Ruthenburg Alexander J, Lee Seunghee, Lee Jae Woon, Verdine Gregory L, Allis C David, Roeder Robert G
Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, New York, New York 10021, USA.
Nat Struct Mol Biol. 2006 Aug;13(8):713-9. doi: 10.1038/nsmb1128. Epub 2006 Jul 30.
Histone H3 Lys4 (H3K4) methylation is a prevalent mark associated with transcription activation. A common feature of several H3K4 methyltransferase complexes is the presence of three structural components (RbBP5, Ash2L and WDR5) and a catalytic subunit containing a SET domain. Here we report the first biochemical reconstitution of a functional four-component mixed-lineage leukemia protein-1 (MLL1) core complex. This reconstitution, combined with in vivo assays, allows direct analysis of the contribution of each component to MLL1 enzymatic activity and their roles in transcriptional regulation. Moreover, taking clues from a crystal structure analysis, we demonstrate that WDR5 mediates interactions of the MLL1 catalytic unit both with the common structural platform and with the histone substrate. Mechanistic insights gained from this study can be generalized to the whole family of SET1-like histone methyltransferases in mammals.
组蛋白H3赖氨酸4(H3K4)甲基化是一种与转录激活相关的普遍标记。几种H3K4甲基转移酶复合物的一个共同特征是存在三个结构组分(RbBP5、Ash2L和WDR5)以及一个含有SET结构域的催化亚基。在此,我们报道了功能性四组分混合谱系白血病蛋白1(MLL1)核心复合物的首次生化重构。这种重构与体内试验相结合,能够直接分析每个组分对MLL1酶活性的贡献及其在转录调控中的作用。此外,基于晶体结构分析的线索,我们证明WDR5介导MLL1催化单元与共同结构平台以及组蛋白底物之间的相互作用。从这项研究中获得的机制性见解可推广到哺乳动物中整个SET1样组蛋白甲基转移酶家族。