Ginsburg Daniel S, Anlembom Timi Elvuchio, Wang Jianing, Patel Sanket R, Li Bing, Hinnebusch Alan G
From the Biomedical Sciences Department, LIU Post, Brookville, New York 11548,
From the Biomedical Sciences Department, LIU Post, Brookville, New York 11548.
J Biol Chem. 2014 Nov 21;289(47):32656-70. doi: 10.1074/jbc.M114.585588. Epub 2014 Oct 9.
Cotranscriptional methylation of histone H3 lysines 4 and 36 by Set1 and Set2, respectively, stimulates interaction between nucleosomes and histone deacetylase complexes to block cryptic transcription in budding yeast. We previously showed that loss of all H3K4 and H3K36 methylation in a set1Δset2Δ mutant reduces interaction between native nucleosomes and the NuA4 lysine acetyltransferase (KAT) complex. We now provide evidence that NuA4 preferentially binds H3 tails mono- and dimethylated on H3K4 and di- and trimethylated on H3K36, an H3 methylation pattern distinct from that recognized by the RPD3C(S) and Hos2/Set3 histone deacetylase complexes (HDACs). Loss of H3K4 or H3K36 methylation in set1Δ or set2Δ mutants reduces NuA4 interaction with bulk nucleosomes in vitro and in vivo, and reduces NuA4 occupancy of transcribed coding sequences at particular genes. We also provide evidence that NuA4 acetylation of lysine residues in the histone H4 tail stimulates SAGA interaction with nucleosomes and its recruitment to coding sequences and attendant acetylation of histone H3 in vivo. Thus, H3 methylation exerts opposing effects of enhancing nucleosome acetylation by both NuA4 and SAGA as well as stimulating nucleosome deacetylation by multiple HDACs to maintain the proper level of histone acetylation in transcribed coding sequences.
分别由Set1和Set2对组蛋白H3赖氨酸4和36进行共转录甲基化,可刺激核小体与组蛋白去乙酰化酶复合物之间的相互作用,从而阻断芽殖酵母中的隐蔽转录。我们之前表明,在set1Δset2Δ突变体中所有H3K4和H3K36甲基化的缺失会降低天然核小体与NuA4赖氨酸乙酰转移酶(KAT)复合物之间的相互作用。我们现在提供证据表明,NuA4优先结合在H3K4上发生单甲基化和二甲基化以及在H3K36上发生二甲基化和三甲基化的H3尾巴,这种H3甲基化模式不同于RPD3C(S)和Hos2/Set3组蛋白去乙酰化酶复合物(HDACs)所识别的模式。set1Δ或set2Δ突变体中H3K4或H3K36甲基化的缺失会在体外和体内降低NuA4与整体核小体的相互作用,并降低NuA4在特定基因转录编码序列上的占有率。我们还提供证据表明,组蛋白H4尾巴中赖氨酸残基的NuA4乙酰化会刺激SAGA与核小体的相互作用及其在体内募集到编码序列并伴随组蛋白H3的乙酰化。因此,H3甲基化发挥着相反的作用,既增强了NuA4和SAGA对核小体的乙酰化,又刺激了多种HDAC对核小体的去乙酰化,以维持转录编码序列中组蛋白乙酰化的适当水平。