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PROPELLER-TWISTING OF BASE-PAIRS AND THE CONFORMATIONAL MOBILITY OF DINUCLEOTIDE STEPS IN DNA

机译:基对的螺旋桨加捻和DNA中小核苷酸步骤的构象移动性

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摘要

When DNA is bent around a protein, it must distort. The distortion occurs by changes in the conformation of successive dinucleotide steps. Bending does not necessarily occur uniformly: some steps might remain particularly rigid, i.e. they might deform relatively little, while others might take more than their proportional share of deformation. We investigate here the deformational capacity of specific dinucleotide steps by examining a database of crystallized oligomers. Dividing the steps into ten types by sequence (AA(=TT), AC(=GT), AG(=CT), AT, CA(=TG), CG, GA(=TC), GC, GG(=CC) and TA), we find that some step types are practically rigid, while others have considerable internal mobility or conformational flexibility. Now in general base-pairs are not planar, but have Propeller-Twist. We find a clear empirical correlation between the level of Propeller-Twist in the base-pairs and the flexibility of the dinucleotide step which they constitute. Propeller-Twist in the base-pairs makes stacking into a dinucleotide step more awkward than in plane base-pairs. In particular, it provides a stereochemical ''locking'' effect which can make steps with highly Propeller-Twisted base-pairs rigid. Although the origins of Propeller-Twist are not yet clearly understood, this result provides a key to understanding the flexibility of DNA in bending around proteins. (C) 1996 Academic Press Limited. [References: 74]
机译:当DNA围绕蛋白质弯曲时,它必须变形。变形是通过连续二核苷酸步骤的构象变化而发生的。弯曲不一定是均匀发生的:某些步骤可能会保持特别刚性,即它们可能变形得相对较小,而其他步骤所承受的变形可能超过比例。我们在这里通过检查结晶的寡聚物数据库调查特定二核苷酸步骤的变形能力。将步骤按顺序分为十种类型(AA(= TT),AC(= GT),AG(= CT),AT,CA(= TG),CG,GA(= TC),GC,GG(= CC)和TA),我们发现某些步类型实际上是刚性的,而另一些则具有相当大的内部移动性或构象灵活性。现在,一般而言,碱基对不是平面的,而是具有螺旋桨扭曲的。我们发现碱基对中螺旋桨-扭曲的水平与它们构成的二核苷酸步骤的灵活性之间存在明显的经验相关性。碱基对中的螺旋桨扭曲使得堆叠成二核苷酸台阶比在平面碱基对中更尴尬。特别是,它提供了立体化学“锁定”效果,可以使高度螺旋桨扭曲的碱基对的步骤变得刚性。尽管尚未清楚了解螺旋桨扭曲的起源,但这一结果为理解DNA弯曲蛋白质周围的灵活性提供了关键。 (C)1996 Academic Press Limited。 [参考:74]

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