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Distance-dependent duplex DNA destabilization proximal to G-quadruplex/i-motif sequences

机译:G-四链体/ i-基序序列附近的距离依赖性双链DNA不稳定

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摘要

G-quadruplexes and i-motifs are complementary examples of non-canonical nucleic acid substructure conformations. G-quadruplex thermodynamic stability has been extensively studied for a variety of base sequences, but the degree of duplex destabilization that adjacent quadruplex structure formation can cause has yet to be fully addressed. Stable in vivo formation of these alternative nucleic acid structures is likely to be highly dependent on whether sufficient spacing exists between neighbouring duplex- and quadruplex-/i-motif-forming regions to accommodate quadruplexes or i-motifs without disrupting duplex stability. Prediction of putative G-quadruplex-forming regions is likely to be assisted by further understanding of what distance (number of base pairs) is required for duplexes to remain stable as quadruplexes or i-motifs form. Using oligonucleotide constructs derived from precedented G-quadruplexes and i-motif-forming bcl-2 P1 promoter region, initial biophysical stability studies indicate that the formation of G-quadruplex and i-motif conformations do destabilize proximal duplex regions. The undermining effect that quadruplex formation can have on duplex stability is mitigated with increased distance from the duplex region: a spacing of five base pairs or more is sufficient to maintain duplex stability proximal to predicted quadruplex/i-motif-forming regions.
机译:G-四链体和i-基序是非规范核酸亚结构构象的互补实例。对G-四链体的热力学稳定性已对各种碱基序列进行了广泛的研究,但相邻四链体结构形成可能引起的双链体不稳定程度尚未得到充分解决。这些替代核酸结构在体内的稳定形成可能高度取决于相邻的双链体和四链体/ i-基序形成区域之间是否存在足够的间距,以容纳四链体或i-基序而不破坏双链体的稳定性。通过进一步了解双链体以四链体或i-基序形式保持稳定所需的距离(碱基对数),可能有助于预测G-四链体形成区域的预测。使用衍生自先前的G-四链体和形成i-基序的bcl-2 P1启动子区域的寡核苷酸构建体,初步的生物物理稳定性研究表明,G-四链体和i-基序构象的形成确实使近端双链体区域不稳定。四链体形成对双链体稳定性的破坏作用会随着距双链体区域的距离增加而减轻:五个碱基对或更多的间距足以保持双链体稳定性接近预测的四链体/ i-基序形成区域。

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