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Folding Equilibrium Constants of Telomere G-Quadruplexes in Free State or Associated with Proteins Determined by Isothermal Differential Hybridization

机译:端粒G-四链体在自由状态或与等温差异杂交法测定的蛋白质相关的折叠平衡常数

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摘要

Guanine rich (G-rich) nucleic acids form G-quadruplex structures that are implicated in many biological processes, pharmaceutical applications, and molecular machinery. The folding equilibrium constant (K_(F)) of the G-quadruplex not only determines its stability and competition against duplex formation in genomic DNA but also defines its recognition by proteins and drugs and technical specifications. The K_(F) is most conveniently derived from thermal melting analysis that has so far yielded extremely diversified results for the human telomere G-quadruplex. Melting analysis cannot be used for nucleic acids associated with proteins, thus has difficulty to study how protein association affects the folding equilibrium of G-quadruplex structure. In this work, we established an isothermal differential hybridization (IDH) method that is able to determine the K_(F) of G-quadruplex, either alone or associated with proteins. Using this method, we studied the folding equilibrium of the core sequence G_(3)(T_(2)AG_(3))_(3) from vertebrate telomere in K~(+) and Na~(+) solutions and how it is affected by proteins associated at its adjacent regions. Our results show that the K_(F) obtained for the free G-quadruplex is within 1 order of magnitude of most of those obtained by melting analysis and protein binding beside a G-quadruplex can dramatically destabilize the G-quadruplex.
机译:富含鸟嘌呤(富含G)的核酸形成G-四链体结构,与许多生物学过程,药物应用和分子机械有关。 G-四链体的折叠平衡常数(K_(F))不仅决定了其稳定性和对基因组DNA中双链体形成的竞争,而且还定义了其对蛋白质,药物和技术规格的识别。 K_(F)最方便地从热解链分析得出,到目前为止,它对人端粒G-四链体产生了极为多样化的结果。熔解分析不能用于与蛋白质结合的核酸,因此难以研究蛋白质结合如何影响G-四链体结构的折叠平衡。在这项工作中,我们建立了等温差分杂交(IDH)方法,该方法能够确定G四联体的K_(F)单独或与蛋白质结合。使用这种方法,我们研究了脊椎动物端粒在K〜(+)和Na〜(+)溶液中核心序列G_(3)(T_(2)AG_(3))_(3)的折叠平衡及其如何受其邻近区域相关蛋白的影响。我们的结果表明,获得的游离G-四链体的K_(F)在大多数通过熔解分析获得的K_(F)范围内,并且在G-四链体旁边的蛋白质结合会极大地破坏G-四链体的稳定性。

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