Ingvarsdottir Kristin, Krogan Nevan J, Emre N C Tolga, Wyce Anastasia, Thompson Natalie J, Emili Andrew, Hughes Timothy R, Greenblatt Jack F, Berger Shelley L
The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, USA.
Mol Cell Biol. 2005 Feb;25(3):1162-72. doi: 10.1128/MCB.25.3.1162-1172.2005.
The SAGA complex is a multisubunit protein complex involved in transcriptional regulation in Saccharomyces cerevisiae. SAGA combines proteins involved in interactions with DNA-bound activators and TATA-binding protein (TBP), as well as enzymes for histone acetylation (Gcn5) and histone deubiquitylation (Ubp8). We recently showed that H2B ubiquitylation and Ubp8-mediated deubiquitylation are both required for transcriptional activation. For this study, we investigated the interaction of Ubp8 with SAGA. Using mutagenesis, we identified a putative zinc (Zn) binding domain within Ubp8 as being critical for the association with SAGA. The Zn binding domain is required for H2B deubiquitylation and for growth on media requiring Ubp8's function in gene activation. Furthermore, we identified an 11-kDa subunit of SAGA, Sgf11, and showed that it is required for the Ubp8 association with SAGA and for H2B deubiquitylation. Different approaches indicated that the functions of Ubp8 and Sgf11 are related and separable from those of other components of SAGA. In particular, the profiles of Ubp8 and Sgf11 deletions were remarkably similar in microarray analyses and synthetic genetic interactions and were distinct from those of the Spt3 and Spt8 subunits of SAGA, which are involved in TBP regulation. These data indicate that Ubp8 and Sgf11 likely represent a new functional module within SAGA that is involved in gene regulation through H2B deubiquitylation.
SAGA复合物是一种多亚基蛋白质复合物,参与酿酒酵母中的转录调控。SAGA结合了与DNA结合激活因子和TATA结合蛋白(TBP)相互作用的蛋白质,以及组蛋白乙酰化酶(Gcn5)和组蛋白去泛素化酶(Ubp8)。我们最近发现,H2B泛素化和Ubp8介导的去泛素化对于转录激活都是必需的。在本研究中,我们调查了Ubp8与SAGA的相互作用。通过诱变,我们确定Ubp8内一个假定的锌(Zn)结合结构域对于与SAGA的结合至关重要。锌结合结构域对于H2B去泛素化以及在需要Ubp8基因激活功能的培养基上生长是必需的。此外,我们鉴定了SAGA的一个11 kDa亚基Sgf11,并表明它是Ubp8与SAGA结合以及H2B去泛素化所必需的。不同的方法表明,Ubp8和Sgf11的功能与SAGA的其他组分相关且可分离。特别是,在微阵列分析和合成遗传相互作用中,Ubp8和Sgf11缺失的图谱非常相似,并且与参与TBP调控的SAGA的Spt3和Spt8亚基不同。这些数据表明,Ubp8和Sgf11可能代表SAGA内一个新的功能模块,通过H2B去泛素化参与基因调控。