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E2 调节蛋白通过间隔序列 TATA 驱动的异常 DNA 结合。

Anomalous DNA binding by E2 regulatory protein driven by spacer sequence TATA.

机构信息

Department of Chemistry, Yale University, New Haven, CT 06511, USA.

出版信息

Nucleic Acids Res. 2010 Jun;38(11):3827-33. doi: 10.1093/nar/gkq114. Epub 2010 Feb 25.

Abstract

We have investigated the anomalously weak binding of human papillomavirus (HPV) regulatory protein E2 to a DNA target containing the spacer sequence TATA. Experiments in magnesium (Mg(2+)) and calcium (Ca(2+)) ion buffers revealed a marked reduction in cutting by DNase I at the CpG sequence in the protein-binding site 3' to the TATA spacer sequence, Studies of the cation dependence of DNA-E2 affinities showed that upon E2 binding the TATA sequence releases approximately twice as many Mg(2+) ions as the average of the other spacer sequences. Binding experiments for TATA spacer relative to ATAT showed that in potassium ion (K(+)) the E2 affinity of the two sequences is nearly equal, but the relative dissociation constant (K(d)) for TATA increases in the order K(+ )< Na(+ )< Ca(2+ )< Mg(2+). Except for Mg(2+), K(d) for TATA relative to ATAT is independent of ion concentration, whereas for Mg(2+) the affinity for TATA drops sharply as ion concentration increases. Thus, ions of increasing positive charge density increasingly distort the E2 binding site, weakening the affinity for protein. In the case of Mg(2+), additional ions are bound to TATA that require displacement for protein binding. We suggest that the TATA sequence may bias the DNA structure towards a conformation that binds the protein relatively weakly.

摘要

我们研究了人乳头瘤病毒(HPV)调节蛋白 E2 与包含 TATA 间隔序列的 DNA 靶标异常弱的结合。在镁(Mg(2+))和钙(Ca(2+))离子缓冲液中的实验揭示了在蛋白质结合位点的 CpG 序列处,DNase I 的切割明显减少,该位点位于 TATA 间隔序列的 3'。对 DNA-E2 亲和力的阳离子依赖性研究表明,E2 结合后,TATA 序列释放的 Mg(2+)离子数量比其他间隔序列的平均值多约两倍。TATA 间隔相对于 ATAT 的结合实验表明,在钾离子(K(+))中,两个序列的 E2 亲和力几乎相等,但 TATA 的相对解离常数(K(d))按 K(+)<Na(+)<Ca(2+)<Mg(2+)的顺序增加。除了 Mg(2+)之外,TATA 相对于 ATAT 的 K(d)与离子浓度无关,而对于 Mg(2+),随着离子浓度的增加,与 TATA 的亲和力急剧下降。因此,正电荷密度增加的离子会越来越多地扭曲 E2 结合位点,从而削弱对蛋白质的亲和力。在 Mg(2+)的情况下,需要置换 TATA 以结合蛋白质的额外离子被结合。我们认为 TATA 序列可能会使 DNA 结构偏向于与蛋白质结合相对较弱的构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b5/2887970/728c8c5ca601/gkq114f1.jpg

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