VanDemark Andrew P, Xin Hua, McCullough Laura, Rawlins Robert, Bentley Shayla, Heroux Annie, Stillman David J, Hill Christopher P, Formosa Tim
Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, Utah 84112, USA.
J Biol Chem. 2008 Feb 22;283(8):5058-68. doi: 10.1074/jbc.M708682200. Epub 2007 Dec 18.
yFACT (heterodimers of Saccharomyces cerevisiae Spt16-Pob3 combined with Nhp6) binds to and alters the properties of nucleosomes. The essential function of yFACT is not disrupted by deletion of the N-terminal domain (NTD) of Spt16 or by mutation of the middle domain of Pob3, but either alteration makes yeast cells sensitive to DNA replication stress. We have determined the structure of the Spt16 NTD and find evidence for a conserved potential peptide-binding site. Pob3-M also contains a putative binding site, and we show that these two sites perform an overlapping essential function. We find that yFACT can bind the N-terminal tails of some histones and that this interaction is important for yFACT-nucleosome binding. However, neither the Spt16 NTD nor a key residue in the putative Pob3-M-binding site was required for interactions with histone N termini or for yFACT-mediated nucleosome reorganization in vitro. Instead, both potential binding sites interact functionally with the C-terminal docking domain of the histone H2A. yFACT therefore appears to make multiple contacts with different sites within nucleosomes, and these interactions are partially redundant with one another. The docking domain of H2A is identified as an important participant in maintaining stability during yFACT-mediated nucleosome reorganization, suggesting new models for the mechanism of this activity.
yFACT(酿酒酵母Spt16 - Pob3异二聚体与Nhp6结合)与核小体结合并改变其性质。删除Spt16的N端结构域(NTD)或Pob3中间结构域的突变均不会破坏yFACT的基本功能,但任何一种改变都会使酵母细胞对DNA复制应激敏感。我们确定了Spt16 NTD的结构,并发现了一个保守的潜在肽结合位点的证据。Pob3 - M也包含一个假定的结合位点,并且我们表明这两个位点执行重叠的基本功能。我们发现yFACT可以结合一些组蛋白的N端尾巴,并且这种相互作用对于yFACT - 核小体结合很重要。然而,与组蛋白N端的相互作用或体外yFACT介导的核小体重组都不需要Spt16 NTD或假定的Pob3 - M结合位点中的关键残基。相反,两个潜在的结合位点都与组蛋白H2A的C端对接结构域在功能上相互作用。因此,yFACT似乎与核小体内的不同位点进行多种接触,并且这些相互作用彼此部分冗余。H2A的对接结构域被确定为在yFACT介导的核小体重组过程中维持稳定性的重要参与者,这为这种活性的机制提出了新的模型。