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The conformational state of the nucleosome entry-exit site modulates TATA box-specific TBP binding

机译:核小体进入和退出位点的构象状态调节TATA盒特异性TBP结合

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The TATA binding protein (TBP) is a critical transcription factor used for nucleating assembly of the RNA polymerase II machinery. TBP binds TATA box elements with high affinity and kinetic stability and in vivo is correlated with high levels of transcription activation. However, since most promoters use less stable TATA-less or TATA-like elements, while also competing with nucleosome occupancy, further mechanistic insight into TBP's DNA binding properties and ability to access chromatin is needed. Using bulk and single-molecule FRET, we find that TBP binds a minimal consensus TATA box as a two-state equilibrium process, showing no evidence for intermediate states. However, upon addition of flanking DNA sequence, we observe non-specific cooperative binding to multiple DNA sites that compete for TATA-box specificity. Thus, we conclude that TBP binding is defined by a branched pathway, wherein TBP initially binds with little sequence specificity and is thermodynamically positioned by its kinetic stability to the TATA box. Furthermore, we observed the real-time access of TBP binding to TATA box DNA located within the DNA entry-exit site of the nucleosome. From these data, we determined salt-dependent changes in the nucleosome conformation regulate TBP's access to the TATA box, where access is highly constrained under physiological conditions, but is alleviated by histone acetylation and TFIIA
机译:TATA结合蛋白(TBP)是用于RNA聚合酶II机制的成核装配的关键转录因子。 TBP以高亲和力和动力学稳定性结合TATA盒元件,并且体内与高水平的转录激活相关。但是,由于大多数启动子使用的稳定性较差,不含TATA的或TATA样的元件,同时还与核小体的竞争,因此需要对TBP的DNA结合特性和获得染色质的能力有更深入的了解。使用本体和单分子FRET,我们发现TBP结合了一个最小的共有TATA盒作为两态平衡过程,没有显示中间态的证据。但是,在添加侧翼DNA序列后,我们观察到了与竞争TATA-box特异性的多个DNA位点的非特异性合作结合。因此,我们得出的结论是,TBP结合是由一条分支途径定义的,其中TBP最初以很少的序列特异性结合,并因其对TATA盒的动力学稳定性而被热力学定位。此外,我们观察到TBP结合到位于核小体DNA进入位点内的TATA box DNA的实时访问。从这些数据中,我们确定了盐依赖的核小体构象变化调节了TBP进入TATA盒的通道,在生理条件下该通道的访问受到高度限制,但组蛋白乙酰化和TFIIA缓解了

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