首页> 美国卫生研究院文献>Nucleic Acids Research >Triplex formation at physiological pH: comparative studies on DNA triplexes containing 5-Me-dC tethered at N4 with spermine and tetraethyleneoxyamine.
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Triplex formation at physiological pH: comparative studies on DNA triplexes containing 5-Me-dC tethered at N4 with spermine and tetraethyleneoxyamine.

机译:在生理pH值下形成三链体:比较研究在N4含5-M​​e-dC与精胺和四亚乙基氧胺的DNA三链体。

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摘要

Oligodeoxynucleotides with spermine conjugation at C4 of 5-Me-dC ( sp -ODN) exhibit triple helix formation with complementary Watson-Crick duplexes, and were optimally stable at physiological pH 7.3 and low salt concentration. This was attributed to a favored reassociation of the polycationic third strand with the anionic DNA duplex. To gain further insights into the factors that contribute to the enhancement of triplex stability and for engineering improved triplex systems, the spermine appendage at C4 of 5-Me-dC was replaced with 1,11-diamino-3,6,9-trioxaundecane to create teg -ODNs. From the triple helix forming abilities of these modified ODNs studied by hysteresis behaviour and the effect of salts on triplex stability, it is demonstrated here that teg- ODNs stabilise triplexes through hydrophobic desolvation while sp -ODNs stabilise triplexes by charge effects. The results imply that factors in addition to base stacking effects and interstrand hydrogen bonds are significantly involved in modulation of triplex stability by base modified oligonucleotides.
机译:在5-Me-dC(sp -ODN)的C4处具有精胺结合的寡脱氧核苷酸显示出与互补的Watson-Crick双链体形成三重螺旋,并且在生理pH 7.3和低盐浓度下具有最佳稳定性。这归因于聚阳离子第三链与阴离子DNA双链体的有利的重新结合。为了进一步了解有助于提高三链稳定性的因素,并设计出改良的三链系统,将5-Me-dC的C4精胺附体替换为1,11-二氨基-3,6,9-三氧杂十二烷,创建teg -ODN。从通过滞后行为研究的这些修饰的ODN的三螺旋形成能力以及盐对三链稳定性的影响,可以证明teg-OD​​N通过疏水去溶剂化作用稳定了三链,而sp-ODN通过电荷作用稳定了三链。结果表明,除碱基堆积效应和链间氢键外,其他因素还参与了碱基修饰寡核苷酸对三链体稳定性的调节。

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