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B型和A型DNA的碱基序列及螺旋结构变异

Base sequence and helix structure variation in B and A DNA.

作者信息

Dickerson R E

出版信息

J Mol Biol. 1983 May 25;166(3):419-41. doi: 10.1016/s0022-2836(83)80093-x.

Abstract

The observed propeller twist in base-pairs of crystalline double-helical DNA oligomers improves the stacking overlap along each individual helix strand. But, as proposed by Calladine, it also leads to clash or steric hindrance between purines at adjacent base-pairs on opposite strands of the helix. This clash can be relieved by: (1) decreasing the local helix twist angle between base-pairs; (2) opening up the roll angle between base-pairs on the side on which the clash occurs; (3) separating purines by sliding base-pairs along their long axes so that the purines are partially pulled out of the stack (leading to equal but opposite alterations in main-chain torsion angle delta at the two ends of the base-pair); and (4) flattening the propeller twist of the offending base-pairs. Simple sum functions, sigma 1 through sigma 4, are defined, by which the expected local variation in helix twist, base roll angle, torsion angle delta and propeller twist may be calculated from base sequence. All four functions are quite successful in predicting the behavior of B DNA. Only the helix twist and base roll functions are applicable to A DNA, and the helix twist function begins to fail for an A helical RNA/DNA hybrid. Within these limits, the sequence-derived sum functions match the observed helix parameter variation quite closely, with correlation coefficients greater than 0.900 in nearly all cases. Implications of this sequence-derived helix parameter variation for repressor-operator interactions are considered.

摘要

在结晶双螺旋DNA寡聚物的碱基对中观察到的螺旋桨扭转改善了沿每条单螺旋链的堆积重叠。但是,正如卡拉迪恩所提出的,它也会导致螺旋相反链上相邻碱基对的嘌呤之间发生碰撞或空间位阻。这种碰撞可以通过以下方式缓解:(1)减小碱基对之间的局部螺旋扭转角;(2)在发生碰撞一侧的碱基对之间打开滚动角;(3)通过沿碱基对的长轴滑动碱基对来分离嘌呤,使嘌呤部分地从堆积中拉出(导致碱基对两端的主链扭转角δ发生相等但相反的变化);以及(4)使有问题的碱基对的螺旋桨扭转变平。定义了简单的和函数,即σ1至σ4,通过它们可以根据碱基序列计算螺旋扭转、碱基滚动角、扭转角δ和螺旋桨扭转的预期局部变化。所有这四个函数在预测B型DNA的行为方面都相当成功。只有螺旋扭转和碱基滚动函数适用于A型DNA,而螺旋扭转函数对于A螺旋RNA/DNA杂交体开始失效。在这些限制范围内,源自序列的和函数与观察到的螺旋参数变化非常接近地匹配,几乎在所有情况下相关系数都大于0.900。考虑了这种源自序列的螺旋参数变化对阻遏物-操纵基因相互作用的影响。

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