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Tracts of A.T base pairs retard the electrophoretic mobility of short DNA duplexes.

机译:A.T碱基对的片段阻碍了短DNA双链体的电泳迁移。

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摘要

An investigation of the mobility of short duplexes of DNA -octamers and decamers-on polyacrylamide gels is presented, showing that molecules containing less than one helical turn exhibit sequence dependent mobilities. Analysis of chains with different sequences indicates that any arrangement of two or more adjacent A.T base pairs causes a duplex to move more slowly than does any combination of isolated A.T pairs This behavior appears to be an intrinsic property of these sequences, since the anomaly persists in the absence of magnesium or presence of spermine and is not due to strand dissociation. In two decamers we studied, the position of A.T tracts within a duplex can be shown to influence mobility: the sequence GA4T4C associated with bending or curvature of the helix axis when ligated into polymers migrates more slowly than the corresponding sequence GT4A4C, polymers of which migrate as linear B DNA.
机译:提出了对DNA-八聚体和十聚体-短双链体在聚丙烯酰胺凝胶上的迁移率的研究,表明含有少于一个螺旋圈的分子表现出序列依赖性迁移率。对具有不同序列的链的分析表明,两个或多个相邻AT碱基对的任何排列都会导致双链体的移动比孤立的AT对的任何组合的移动都更慢。此行为似乎是这些序列的固有属性,因为异常持续存在于镁的缺乏或精胺的存在,并且不是由于链解离。在我们研究的两个弯度中,AT束在双链体中的位置可显示出对迁移率的影响:连接到聚合物中时与螺旋轴弯曲或弯曲相关的序列GA4T4C比相应的序列GT4A4C迁移更慢作为线性B DNA。

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