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Dissection of the NF-Y transcriptional activation potential.

机译:解剖NF-Y转录激活潜力。

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摘要

NF-Y is a trimeric CCAAT-binding factor with histone fold subunits (NF-YB/NF-YC) and bipartite activation domains located on NF-YA and NF-YC. We reconstituted the NF-Y activation potential in vivo with GAL4 DBD fusions. In the GAL4-YA configuration, activation requires co-expression of the three subunits; with GAL4-YB and GAL4-YC, transfections of the histone fold partners are sufficient, provided that the Q-rich domain of NF-YC is present. Combinations of mutants indicate that the Q-rich domains of NF-YA and NF-YC are redundant in the trimeric complex. Glutamines 101 and 102 of NF-YA are required for activity. We assayed NF-Y on different promoter targets, containing single or multiple GAL4 sites: whereas on a single site NF-Y is nearly as powerful as VP16, on multiple sites neither synergistic nor additive effects are observed. NF-Y activates TATA and Inr core elements and the overall potency is in the same range as other Q-rich and Pro-rich activation domains. These results represent the first in vivo evidence of subunit interactions studies and further support the hypothesis that NF-Y is a general promoter organizer rather than a brute activator.
机译:NF-Y是三聚体CCAAT结合因子,具有组蛋白折叠亚基(NF-YB / NF-YC)和位于NF-YA和NF-YC上的双部分激活结构域。我们在GAL4 DBD融合体内重建了NF-Y激活潜力。在GAL4-YA配置中,激活需要三个亚基的共表达。使用GAL4-YB和GAL4-YC,只要存在NF-YC富含Q的结构域,组蛋白折叠伴侣的转染就足够了。突变体的组合表明,在三聚体复合物中,NF-YA和NF-YC的富含Q的域是多余的。活性需要NF-YA的谷氨酰胺101和102。我们在包含单个或多个GAL4位点的不同启动子靶标上测定了NF-Y:而在单个位点上,NF-Y与VP16几乎一样强大,在多个位点上均未观察到协同作用或加和作用。 NF-Y激活TATA和Inr核心元件,总效能与其他富含Q和Pro的活化域在同一范围内。这些结果代表了亚单位相互作用研究的第一个体内证据,并进一步支持了NF-Y是一般启动子的组织者而不是野蛮的活化剂的假说。

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