Spedaletti Valentina, Polticelli Fabio, Capodaglio Viviana, Schininà M Eugenia, Stano Pasquale, Federico Rodolfo, Tavladoraki Paraskevi
Department of Biology, University Roma Tre, 00146 Rome, Italy.
Biochemistry. 2008 Apr 29;47(17):4936-47. doi: 10.1021/bi701969k. Epub 2008 Apr 5.
Arabidopsis thaliana has four genes with close homology to human histone H3 lysine 4 demethylase (HsLSD1), a component of various transcriptional corepressor complexes that often also contain histone deacetylases and the corepressor protein CoREST. All four Arabidopsis proteins contain a flavin amine oxidase domain and a SWIRM domain, the latter being present in a number of proteins involved in chromatin regulation. Here, we describe the heterologous expression and biochemical characterization of one of these Arabidopsis proteins (AtLSD1) and show that, similarly to HsLSD1, it has demethylase activity toward mono- and dimethylated Lys4 but not dimethylated Lys9 and Lys27 of histone 3. Modeling of the AtLSD1 three-dimensional structure using the HsLSD1 crystal structure as a template revealed a high degree of conservation of the residues building up the active site and some important differences. Among these differences, the most prominent is the lack of the HsLSD1 Tower domain, which has been shown to interact with CoREST and to be indispensable for HsLSD1 demethylase activity. This observation, together with AtLSD1 peculiar surface electrostatic potential distribution, suggests that the molecular partners of AtLSD1 are probably different from those of the human orthologue.
拟南芥有四个与人类组蛋白H3赖氨酸4去甲基化酶(HsLSD1)具有高度同源性的基因,HsLSD1是各种转录共抑制复合物的一个组成部分,这些复合物通常还包含组蛋白去乙酰化酶和共抑制蛋白CoREST。拟南芥的这四种蛋白质都含有一个黄素胺氧化酶结构域和一个SWIRM结构域,后者存在于许多参与染色质调控的蛋白质中。在这里,我们描述了其中一种拟南芥蛋白质(AtLSD1)的异源表达和生化特性,并表明,与HsLSD1类似,它对组蛋白3的单甲基化和二甲基化赖氨酸4具有去甲基化活性,但对二甲基化赖氨酸9和赖氨酸27没有活性。以HsLSD1晶体结构为模板对AtLSD1三维结构进行建模,结果显示构成活性位点的残基具有高度保守性,但也存在一些重要差异。在这些差异中,最显著的是缺少HsLSD1的塔状结构域,该结构域已被证明与CoREST相互作用,并且对HsLSD1的去甲基化活性不可或缺。这一观察结果,连同AtLSD1独特的表面静电势分布,表明AtLSD1的分子伴侣可能与人类同源物不同。