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Topological effects of the TATA box binding protein on minicircle DNA and a possible thermodynamic linkage to chromatin remodeling.

机译:TATA盒结合蛋白对微圆DNA的拓扑效应以及可能与染色质重塑的热力学联系。

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摘要

DNA ring closure experiments on short restriction fragments ( approximately 160 bp) bound by the TATA box binding protein (TBP) have demonstrated the formation of negative topoisomers, consistent with crystallographically observed TBP-induced DNA untwisting but in contrast to most previous results on topological effects in plasmid DNA. The difference may be due to the high free energy cost of substantial writhe in minicircles. A speculative mechanism for the loss of TBP-induced writhe suggests that TBP is capable of inducing DeltaTw between 0 and -0.3 in minicircles, via loss of out-of-plane bending upon retraction of intercalating Phe stirrups, and that TBP can thus act as a "supercoil shock absorber". The proposed biological relevance of these observations is that they may model the behavior of DNA in constrained chromatin environments. Irrespective of the detailed mechanism of TBP-induced supercoiling, its existence suggests that chromatin remodeling and enhanced TBP binding are thermodynamically linked. Remodeling ATPases or histone acetylases release some of the negative supercoiling previously restrained by the nucleosome. When TBP takes up the supercoiling, its binding should be enhanced transiently until the unrestrained supercoiling is removed by diffusion or topoisomerases. The effect is predicted to be independent of local remodeling-induced changes in TATA box accessibility.
机译:通过TATA盒结合蛋白(TBP)结合的短限制性片段(约160 bp)的DNA环封闭实验表明,形成了阴性拓扑异构体,这与晶体学上观察到的TBP诱导的DNA解捻一致,但与大多数以前关于拓扑效应的结果相反在质粒DNA中。差异可能是由于微圆中大量旋扭的高自由能成本所致。 TBP引起的旋转丢失的推测机制表明,TBP能够通过缩回插入的Phe箍筋时失去平面外弯曲,从而在小圆中诱导DeltaTw在0到-0.3之间。 “超级线圈减震器”。这些观察结果的生物学相关性是,它们可以模拟DNA在受限染色质环境中的行为。无论TBP诱导的超螺旋的详细机理如何,其存在都表明染色质重塑和增强的TBP结合是热力学联系的。重塑ATP酶或组蛋白乙酰化酶会释放一些先前受核小体抑制的负超螺旋。当TBP占据超螺旋时,其结合应暂时增强,直至不受约束的超螺旋通过扩散或拓扑异构酶去除。预计效果与TATA盒可访问性中的局部重塑诱导的变化无关。

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