Emre N C Tolga, Ingvarsdottir Kristin, Wyce Anastasia, Wood Adam, Krogan Nevan J, Henry Karl W, Li Keqin, Marmorstein Ronen, Greenblatt Jack F, Shilatifard Ali, Berger Shelley L
Gene Expression and Regulation Program, The Wistar Institute, Philadelphia, PA 19024, USA.
Mol Cell. 2005 Feb 18;17(4):585-94. doi: 10.1016/j.molcel.2005.01.007.
Low levels of histone covalent modifications are associated with gene silencing at telomeres and other regions in the yeast S. cerevisiae. Although the histone deacetylase Sir2 maintains low acetylation, mechanisms responsible for low H2B ubiquitylation and low H3 methylation are unknown. Here, we show that the ubiquitin protease Ubp10 targets H2B for deubiquitylation, helping to localize Sir2 to the telomere. Ubp10 exhibits reciprocal Sir2-dependent preferential localization proximal to telomeres, where Ubp10 serves to maintain low H2B Lys123 ubiquitylation in this region and, through previously characterized crosstalk, maintains low H3 Lys4 and Lys79 methylation in a slightly broader region. Ubp10 is also localized to the rDNA locus, a second silenced domain, where it similarly maintains low histone methylation. We compare Ubp10 to Ubp8, the SAGA-associated H2B deubiquitylase involved in gene activation, and show that telomeric and gene-silencing functions are specific to Ubp10. Our results suggest that these H2B-deubiquitylating enzymes have distinct genomic functions.
在酿酒酵母中,组蛋白共价修饰水平较低与端粒及其他区域的基因沉默有关。虽然组蛋白去乙酰化酶Sir2维持低乙酰化状态,但导致低H2B泛素化和低H3甲基化的机制尚不清楚。在此,我们表明泛素蛋白酶Ubp10靶向H2B进行去泛素化,有助于将Sir2定位到端粒。Ubp10在端粒附近表现出与Sir2相互依赖的优先定位,在该区域Ubp10用于维持该区域低H2B Lys123泛素化,并通过先前已表征的串扰作用,在稍宽的区域维持低H3 Lys4和Lys79甲基化。Ubp10也定位于rDNA位点,这是第二个沉默结构域,在那里它同样维持低组蛋白甲基化。我们将Ubp10与Ubp8进行比较,Ubp8是参与基因激活的与SAGA相关的H2B去泛素化酶,并表明端粒和基因沉默功能是Ubp10特有的。我们的结果表明,这些H2B去泛素化酶具有不同的基因组功能。