Bieluszewski Tomasz, Galganski Lukasz, Sura Weronika, Bieluszewska Anna, Abram Mateusz, Ludwikow Agnieszka, Ziolkowski Piotr Andrzej, Sadowski Jan
BMC Plant Biol. 2015 Mar 5;15:75. doi: 10.1186/s12870-015-0461-1.
Histone acetyltransferase complex NuA4 and histone variant exchanging complex SWR1 are two chromatin modifying complexes which act cooperatively in yeast and share some intriguing structural similarities. Protein subunits of NuA4 and SWR1-C are highly conserved across eukaryotes, but form different multiprotein arrangements. For example, the human TIP60-p400 complex consists of homologues of both yeast NuA4 and SWR1-C subunits, combining subunits necessary for histone acetylation and histone variant exchange. It is currently not known what protein complexes are formed by the plant homologues of NuA4 and SWR1-C subunits.
We report on the identification and molecular characterization of AtEAF1, a new subunit of Arabidopsis NuA4 complex which shows many similarities to the platform protein of the yeast NuA4 complex. AtEAF1 copurifies with Arabidopsis homologues of NuA4 and SWR1-C subunits ARP4 and SWC4 and interacts physically with AtYAF9A and AtYAF9B, homologues of the YAF9 subunit. Plants carrying a T-DNA insertion in one of the genes encoding AtEAF1 showed decreased FLC expression and early flowering, similarly to Atyaf9 mutants. Chromatin immunoprecipitation analyses of the single mutant Ateaf1b-2 and artificial miRNA knock-down Ateaf1 lines showed decreased levels of H4K5 acetylation in the promoter regions of major flowering regulator genes, further supporting the role of AtEAF1 as a subunit of the plant NuA4 complex.
Growing evidence suggests that the molecular functions of the NuA4 and SWR1 complexes are conserved in plants and contribute significantly to plant development and physiology. Our work provides evidence for the existence of a yeast-like EAF1 platform protein in A. thaliana, filling an important gap in the knowledge about the subunit organization of the plant NuA4 complex.
组蛋白乙酰转移酶复合物NuA4和组蛋白变体交换复合物SWR1是两种染色质修饰复合物,它们在酵母中协同作用,并且在结构上有一些有趣的相似之处。NuA4和SWR1-C的蛋白质亚基在真核生物中高度保守,但形成不同的多蛋白组合。例如,人类TIP60-p400复合物由酵母NuA4和SWR1-C亚基的同源物组成,结合了组蛋白乙酰化和组蛋白变体交换所需的亚基。目前尚不清楚植物中NuA4和SWR1-C亚基的同源物会形成何种蛋白质复合物。
我们报道了拟南芥NuA4复合物新亚基AtEAF1的鉴定和分子特征,它与酵母NuA4复合物的平台蛋白有许多相似之处。AtEAF1与NuA4和SWR1-C亚基ARP4和SWC4的拟南芥同源物共纯化,并与YAF9亚基的同源物AtYAF9A和AtYAF9B发生物理相互作用。在编码AtEAF1的其中一个基因中携带T-DNA插入的植物表现出FLC表达降低和早花,类似于Atyaf9突变体。对单突变体Ateaf1b-2和人工miRNA敲低的Ateaf1株系进行的染色质免疫沉淀分析表明,主要开花调节基因启动子区域的H4K5乙酰化水平降低,进一步支持了AtEAF1作为植物NuA4复合物亚基的作用。
越来越多的证据表明,NuA4和SWR1复合物的分子功能在植物中是保守的,并且对植物发育和生理有重要贡献。我们的工作为拟南芥中存在类似酵母的EAF1平台蛋白提供了证据,填补了关于植物NuA4复合物亚基组织知识的一个重要空白。