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不含A-A的弯曲DNA:所有16个DNA楔形角的实验估计

Curved DNA without A-A: experimental estimation of all 16 DNA wedge angles.

作者信息

Bolshoy A, McNamara P, Harrington R E, Trifonov E N

机构信息

Department of Polymer Research, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Proc Natl Acad Sci U S A. 1991 Mar 15;88(6):2312-6. doi: 10.1073/pnas.88.6.2312.

DOI:10.1073/pnas.88.6.2312
PMID:2006170
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC51221/
Abstract

The principal sequence feature responsible for intrinsic DNA curvature is generally assumed to be runs of adenines. However, according to the wedge model of DNA curvature, each dinucleotide step is associated with a characteristic deflection of the local helix axis. Thus, an important test of a more general view of sequence-dependent DNA curvature is whether sequence elements other than A-A cause the DNA axis to deflect. To address this question, we have applied the wedge model to a large body of experimental data. The axial path of DNA can be described at each step by three Eulerian angles: the helical twist, the deflection angle (wedge angle), and the direction of the deflection. Circularization and gel electrophoretic mobility data on 54 synthetic DNA fragments, both from other laboratories and from our own, were used to compare the theoretical predictions of the wedge model with experiment. By minimizing misfit between calculated and observed DNA curvature, we have found that the stacks AG/CT, CG/CG, GA/TC, and GC/GC, in addition to AA/TT, have large wedge values. We have also synthesized seven sequences without AA/TT elements but with these other wedges correctly phased to cause appreciable predicted curvature. All appear curved as demonstrated by anomalous gel mobilities. The full set of 16 roll and tilt wedge angles is estimated and, together with the known 10 helical twists, these allow prediction of the general sequence-dependent trajectory of the DNA axis.

摘要

一般认为,导致DNA固有弯曲的主要序列特征是一连串的腺嘌呤。然而,根据DNA弯曲的楔形模型,每个二核苷酸步移都与局部螺旋轴的特定偏转相关。因此,对序列依赖性DNA弯曲更普遍观点的一个重要检验是,除了A - A之外的序列元件是否会导致DNA轴发生偏转。为了解决这个问题,我们将楔形模型应用于大量实验数据。DNA的轴向路径可以在每个步移处用三个欧拉角来描述:螺旋扭转角、偏转角(楔角)和偏转方向。来自其他实验室和我们自己实验室的54个合成DNA片段的环化和凝胶电泳迁移率数据,被用于将楔形模型的理论预测与实验进行比较。通过最小化计算得到的和观察到的DNA弯曲之间的不匹配,我们发现,除了AA/TT之外,AG/CT、CG/CG、GA/TC和GC/GC堆叠也具有较大的楔值。我们还合成了七个不含AA/TT元件但具有这些其他楔并且相位正确以导致可观预测弯曲的序列。如异常的凝胶迁移率所示,所有这些序列似乎都有弯曲。估计了完整的16个滚动和倾斜楔角集,并且连同已知的10个螺旋扭转角一起,这些角度能够预测DNA轴的一般序列依赖性轨迹。

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Proc Natl Acad Sci U S A. 1991 Mar 15;88(6):2312-6. doi: 10.1073/pnas.88.6.2312.
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本文引用的文献

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