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DNA弯曲性——大肠杆菌启动子识别中的一个新特征。

DNA bendability--a novel feature in E. coli promoter recognition.

作者信息

Ozoline O N, Deev A A, Trifonov E N

机构信息

Institute of Cell Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region.

出版信息

J Biomol Struct Dyn. 1999 Feb;16(4):825-31. doi: 10.1080/07391102.1999.10508295.

Abstract

The distribution of deformable base-pair steps in the structure of bacterial promoters is analyzed with respect to their possible structural and functional role. A regular positioning of TA and TG stacks is detected with the best fit period 5.6 bp. This value is interpreted as a half of the sequence period 11.2 bp, somewhat higher than the structural helical repeat of B-DNA (10.55 bp). The difference, +0.65 bp, suggests a sequence-dependent helical writhe of the promoter DNA--a right-handed superhelix. Apparently, to favour rotational setting of DNA on the surface of RNA polymerase the flexible steps deformable largely towards the grooves, follow the half-period spacing. Such rotational setting is consistent with the DNase I footprinting data. Periodical distribution of deformable base-pair stacks shows negative correlation with the presence of -35 canonical hexamer, suggesting the functional significance of this novel element for promoter recognition. The RNA polymerase--DNA recognition is discussed as interaction of distributional type that involves many elements of different nature which are in partially compensatory relations.

摘要

分析了细菌启动子结构中可变形碱基对步移的分布情况,以探讨其可能的结构和功能作用。检测到TA和TG堆积的规则定位,最佳拟合周期为5.6 bp。该值被解释为序列周期11.2 bp的一半,略高于B-DNA的结构螺旋重复(10.55 bp)。相差+0.65 bp,表明启动子DNA存在序列依赖性螺旋扭曲——一种右手超螺旋。显然,为了有利于DNA在RNA聚合酶表面的旋转定位,主要向凹槽方向大量变形的柔性步移遵循半周期间距。这种旋转定位与DNase I足迹数据一致。可变形碱基对堆积的周期性分布与-35规范六聚体的存在呈负相关,表明这一新元件对启动子识别具有功能意义。RNA聚合酶与DNA的识别被讨论为一种分布类型的相互作用,涉及许多不同性质的元件,它们处于部分补偿关系中。

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