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Bimolecular DNA triplexes: duplex extensions show implications for H-form DNA stability

机译:双分子DNA三链体:双链体延伸显示出对H型DNA稳定性的影响

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摘要

H-form DNA has recently been shown to be biologically relevant by its involvement in the process of homologous recombination [Kohwi, Y. , and Panchenko, Y. (1993) Genes Dev. 7, 1766-1778]. A bimolecular DNA triple-stranded structure (triplex) is central to the formation of H-form DNA. Understanding the formation and factors governing the stability of such bimolecular triplexes is necessary to fully elucidate the structure/function relationship of H-form DNA. In this study, we extend known information on bimolecular triplexes by examining the effect of a variable CNC base triad (where N = A, C, T, or G) on a 10 base triad triplex that mimics the triplex motif in H-form DNA. We also examine the effect that a duplex extension of four base pairs has on triplex stability and selectivity for the base N. Results from thermal denaturation experiments indicate that the fully complementary triplex is more stable than its duplex counterpart (DeltaTm = 13 degrees C) and is resistant to degradation by bovine spleen phosphodiesterase for at least 24 h at 10 degrees C. A single-base mismatch in the purine strand of the triplex structure is destabilizing (DeltaTm = approximately 20 degrees C), and all structures containing a mismatch were readily degraded by bovine spleen phosphodiesterase. An extension of four duplex base pairs onto the triplex structure affects the stability of the DNA complex and may have implications relevant to H-form DNA.
机译:最近,H型DNA通过参与同源重组过程而显示出生物学相关性[Kohwi,Y。和Panchenko,Y。(1993)Genes Dev.Immunol。 7,1766-1778]。双分子DNA三链结构(三链体)是H型DNA形成的核心。要充分阐明H型DNA的结构/功能关系,必须了解控制此类双分子三链体稳定性的形成和因素。在这项研究中,我们通过检查可变的CNC基础三联体(其中N = A,C,T或G)对模拟H型DNA中三联体基序的10个碱基三联体的影响,扩展了有关双分子三联体的已知信息。 。我们还检查了四个碱基对的双链体延伸对碱基N的三链体稳定性和选择性的影响。热变性实验的结果表明,完全互补的三链体比其双链体对等体更稳定(DeltaTm = 13摄氏度),并且在10°C的温度下至少24 h内抗牛脾磷酸二酯酶降解。三链体结构的嘌呤链中的单碱基错配不稳定(DeltaTm =约20℃),并且所有包含错配的结构都容易产生被牛脾脏磷酸二酯酶降解。四个双链碱基对在三链体结构上的延伸会影响DNA复合物的稳定性,并可能与H型DNA有关。

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