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Polymerase (Pol) III TATA Box-Binding Protein (TBP)-Associated Factor Brf Binds to a Surface on TBP Also Required for Activated Pol II Transcription

机译:聚合酶(Pol)III TATA盒结合蛋白(TBP)相关因子Brf结合到TBP的表面,这也是激活Pol II转录所必需的

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摘要

The TATA box-binding protein (TBP) plays an essential role in transcription by all three eukaryotic nuclear RNA polymerases, polymerases (Pol) I, II, and III. In each case, TBP interacts with class-specific TBP-associated factors (TAFs) to form class-specific transcription initiation factors. For yeast Pol III transcription, TBP associates with Brf (from TFIIB-related factor) and B", two Pol III TAFs, to form Pol III transcription factor TFIIIB. Here, we identify TBP surface residues that are required for interaction with yeast Pol III TAFs. Ninety-one human TBP surface residue mutants with radical substitutions were analyzed for the ability to form stable gel shift complexes with purified Brf and B" and for their activities for in vitro synthesis of yeast U6 snRNA. Mutations in a large positively charged epitope extending from the top (that is, on the surface opposite the DNA-facing “saddle” of TBP) and onto the side of the first TBP repeat inhibited binding to Brf (residues K181, L185, R186, E206, R231, L232, R235, K236, R239, Q242, K243, K249, and F250). A triple-mutant TBP (R231E + R235E + R239S) had greatly reduced activity for yeast U6 snRNA gene transcription while remaining active for Pol II basal transcription. Similar results were observed when selected mutations were introduced into yeast TBP at equivalent positions. A C-terminal fragment of Brf lacking the region of homology with TFIIB retains the ability to bind TBP-DNA complexes (G. Kassavetis, C. Bardeleben, A. Kumar, E. Ramirez, and E. P. Geiduschek, Mol. Cell. Biol. 17:5299–5306, 1997); the same TBP mutations reduced binding by this fragment. Mutations in TBP residues that interact with TFIIB did not affect Brf binding or U6 gene transcription. These results indicate that Brf and TFIIB interact differently with TBP. An extensively overlapping epitope on the top surface of TBP was found previously to be required for activated Pol II transcription and has been hypothesized to interact with Pol II TAFs. Our results map the surface of TBP that interacts with Brf and suggest that Pol II and Pol III TAFs interact with the same surface of TBP.
机译:TATA盒结合蛋白(TBP)在所有三种真核核RNA聚合酶,聚合酶(Pol)I,II和III的转录中起着至关重要的作用。在每种情况下,TBP与类特定的TBP相关因子(TAF)相互作用形成类特定的转录起始因子。对于酵母Pol III转录,TBP与Brf(来自TFIIB相关因子)和B“(两个Pol III TAF)结合,形成Pol III转录因子TFIIIB。在这里,我们确定了与酵母Pol III相互作用所需的TBP表面残基。分析了具有自由基取代的九十一个人TBP表面残基突变体与纯化的Brf和B“形成稳定的凝胶移位复合物的能力,以及它们在体外合成酵母U6 snRNA的活性。从顶部(即与TBP面向DNA的“鞍”相对的表面)延伸到第一个TBP侧面的带正电荷的大表位的突变会抑制与Brf的结合(残基K181,L185,R186, E206,R231,L232,R235,K236,R239,Q242,K243,K249和F250)。三突变体TBP(R231E + R235E + R239S)对酵母U6 snRNA基因转录的活性大大降低,而对Pol II基础转录却保持活性。当将选定的突变引入酵母TBP中的等效位置时,观察到相似的结果。缺乏与TFIIB同源区域的Brf的C末端片段保留了结合TBP-DNA复合物的能力(G.Kassavetis,C.Bardeleben,A.Kumar,E.Ramirez和EP Geiduschek,Mol.Cell.Biol。 17:5299-5306,1997);相同的TBP突变减少了该片段的结合。与TFIIB相互作用的TBP残基突变不会影响Brf结合或U6基因转录。这些结果表明,Brf和TFIIB与TBP的相互作用不同。先前发现,激活的Pol II转录需要在TBP顶表面上广泛重叠的表位,并且已经假设其与Pol II TAF相互作用。我们的结果绘制了与Brf相互作用的TBP表面,并暗示Pol II和Pol III TAF与TBP的同一表面相互作用。

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