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Core promoter elements of eukaryotic genes have a highly distinctive mechanical property

机译:真核基因的核心启动子元件具有非常独特的机械性能

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In spite of the abundant data on DNA sequence, the mechanical aspects of promoter DNA remain poorly understood. We classified 1871 human and 196 mouse RNA polymerase II promoters and investigated average flexibility profiles of the human promoters containing either a TATA box or an initiator (Inr) sequence only. Here, we show that TATA boxes and Inr sequences have a common anomalous mechanical property: they are comprised of distinctively flexible and rigid sequences, compared with the other parts of the promoter region. The +2 position in the Inr consensus sequence does not favor adenine to keep the high flexibility and thus this position is more accurately represented as 'T, G, C>A'. Additionally, it was also found that DNA region upstream of TATA box or Inr sequence is more rigid than region downstream of each element. These properties may function as a marker for recognition by TATA-binding protein and Inr-binding protein.
机译:尽管有关DNA序列的数据很多,但对启动子DNA的机械方面仍然知之甚少。我们对1871人和196小鼠RNA聚合酶II启动子进行了分类,并研究了仅包含TATA盒或启动子(Inr)序列的人启动子的平均柔韧性。在这里,我们显示TATA框和Inr序列具有共同的异常机械特性:与启动子区域的其他部分相比,它们包含独特的柔性和刚性序列。 Inr共有序列中的+2位置不利于腺嘌呤以保持高柔韧性,因此该位置更准确地表示为“ T,G,C> A”。另外,还发现TATA盒或Inr序列上游的DNA区域比每个元件下游的区域更坚硬。这些性质可以用作TATA结合蛋白和Inr结合蛋白识别的标志。

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