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TFIIB aptamers inhibit transcription by perturbing PIC formation at distinct stages

机译:TFIIB适体通过在不同阶段干扰PIC的形成来抑制转录

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Transcription in eukaryotes is a multistep process involving the assembly and disassembly of numerous inter- and intramolecular interactions between transcription factors and nucleic acids. The roles of each of these interactions and the regions responsible for them have been identified and studied primarily by the use of mutants, which destroy the inherent properties of the interacting surface. A less intrusive but potentially effective way to study the interactions as well as the surfaces responsible for them is the use of RNA aptamers that bind to the interacting factors. Here, we report the isolation and characterization of high-affinity RNA aptamers that bind to the yeast general transcription factor TFIIB. These aptamers fall into two classes that interfere with TFIIB's interactions with either TBP or RNA polymerase II, both of which are crucial for transcription in yeast. We demonstrate the high affinity and specificity of these reagents, their effect on transcription and preinitiation complex formation and discuss their potential use to address mechanistic questions in vitro as well as in vivo.
机译:真核生物中的转录是一个多步骤过程,涉及组装和拆卸转录因子和核酸之间的许多分子间和分子内相互作用。主要通过使用突变体来鉴定和研究了每种相互作用以及负责这些相互作用的区域的作用,这些突变体破坏了相互作用表面的固有特性。研究相互作用以及引起相互作用的表面的一种较不具侵入性但潜在有效的方法是使用与相互作用因子结合的RNA适体。在这里,我们报告结合酵母一般转录因子TFILB的高亲和力RNA适体的分离和表征。这些适体分为两类,它们会干扰TFIIB与TBP或RNA聚合酶II的相互作用,这两者对于酵母中的转录至关重要。我们证明了这些试剂的高亲和力和特异性,它们对转录和预起始复合物形成的影响,并讨论了它们潜在的用途来解决体外以及体内的机械问题。

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