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The Effect of Small Cosolutes that Mimic Molecular Crowding Conditions on the Stability of Triplexes Involving Duplex DNA

机译:模拟分子拥挤条件的小溶质对涉及双链DNA的三链体稳定性的影响

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摘要

Triplex stability is studied in crowding conditions using small cosolutes (ethanol, acetonitrile and dimethylsulfoxide) by ultraviolet (UV), circular dichroism (CD) and nuclear magnetic resonance (NMR) spectroscopies. The results indicate that the triplex is formed preferentially when the triplex forming oligonucleotide (TFO) is RNA. In addition, DNA triplexes (D:D·D) are clearly less stable in cosolute solutions while the stability of the RNA triplexes (R:D·D) is only slightly decreased. The kinetic of triplex formation with RNA-TFO is slower than with DNA-TFO and the thermal stability of the triplex is increased with the salt concentration in EtOH-water solutions. Accordingly, RNA could be considered a potential molecule to form a stable triplex for regulatory purposes in molecular crowding conditions.
机译:在拥挤条件下,使用小型固溶体(乙醇,乙腈和二甲基亚砜)通过紫外(UV),圆二色性(CD)和核磁共振(NMR)光谱研究三重稳定性。结果表明,当三链形成寡核苷酸(TFO)为RNA时,三链优先形成。另外,DNA三链体(D:D·D)在固溶溶液中的稳定性明显较差,而RNA三链体(R:D·D)的稳定性仅稍有下降。 RNA-TFO形成三链体的动力学要比DNA-TFO慢,并且随着EtOH水溶液中盐浓度的增加,三链体的热稳定性会提高。因此,在分子拥挤条件下,RNA可被认为是潜在的形成稳定三链体的分子,用于调节目的。

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