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首页> 外文期刊>Molecular and Cellular Biology >The yeast TATA-binding protein (TBP) core domain assembles with human TBP-associated factors into a functional TFIID complex.
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The yeast TATA-binding protein (TBP) core domain assembles with human TBP-associated factors into a functional TFIID complex.

机译:酵母TATA结合蛋白(TBP)核心结构域与人TBP相关因子组装成功能性TFIID复合物。

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In mammalian and Drosophila cells, the central RNA polymerase II general transcription factor TFIID is a multisubunit complex containing the TATA-binding protein (TBP) and TBP-associated factors (TAFs) bound to the conserved TBP carboxy-terminal core domain. TBP also associates with alternative TAFs in these cells to form general transcription factors required for initiation by RNA polymerases I and III. Although extracts of human HeLa cells contain little TBP that is not associated with TAFs, free TBP is readily isolated from yeast cell extracts. However, recent studies indicate that yeast TBP can also interact with other yeast polypeptides to form multiprotein complexes. We established stable human HeLa cell lines expressing yeast TBP and several yeast-human TBP hybrids to study TBP-TAF interactions. We found that the yeast TBP core domain assembles with a complete set of human TAFs into a stable TFIID complex that can support activated transcription in vitro. The fact that the yeast TBP core, which differs from human TBP core in approximately 20% of its amino acid residues, has the structural features required to form a stable complex with human TAFs implies that Saccharomyces cerevisiae probably contains TAFs that are structurally and functionally analogous to human TAFs. Surprisingly, the non-conserved amino terminus of yeast TBP inhibited association between the yeast core domain and human TAFs.
机译:在哺乳动物和果蝇细胞中,中央RNA聚合酶II通用转录因子TFIID是一个多亚基复合物,包含结合至保守的TBP羧基末端核心结构域的TATA结合蛋白(TBP)和TBP相关因子(TAF)。 TBP还与这些细胞中的替代TAF结合,形成RNA聚合酶I和III起始所需的一般转录因子。尽管人HeLa细胞的提取物几乎不包含与TAF相关的TBP,但很容易从酵母细胞提取物中分离出游离的TBP。然而,最近的研究表明,酵母TBP还可以与其他酵母多肽相互作用形成多蛋白复合物。我们建立了表达酵母TBP和几种酵母-人TBP杂种的稳定人HeLa细胞系,以研究TBP-TAF相互作用。我们发现酵母TBP核心域与一整套人类TAFs组装成一个稳定的TFIID复合物,可以支持体外激活的转录。酵母TBP核心在大约20%的氨基酸残基上与人TBP核心不同,具有与人TAF形成稳定复合物所需的结构特征这一事实表明,酿酒酵母可能含有在结构和功能上相似的TAF人类TAF。令人惊讶地,酵母TBP的非保守氨基末端抑制了酵母核心结构域与人TAF之间的缔合。

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