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Thermodynamic contributions of 5’- and 3’-single strand dangling-ends to the stability of short duplex DNAs

机译:5'和3'单链悬挂末端对短双链DNA稳定性的热力学贡献

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Differential scanning calorimetry (DSC) melting analysis was performed on 27 short double stranded DNA duplexes containing 15 to 25 base pairs. Experimental duplexes were divided into two categories containing either two 5’ dangling-ends or one 5’ and one 3’ dangling-end. Duplex regions were incrementally reduced from 25 to 15 base pairs with a concurrent increase in length of dangling-ends from 1 to 10 bases. Blunt-ended duplexes from 15 to 25 base pairs served as controls. An additional set of molecules containing 21 base pair duplexes and a single four base dangling-end were also examined. DSC melting curves were measured in varying concentrations of sodium ion (Na+). From these measurements, thermodynamic parameters for 5’ and 3’ dangling-ends were evaluated as a function of dangling end length. 5’ ends were found to be slightly stabilizing but essentially constant while the 3’ ends were destabilizing with increasing length of the dangling-end. 3’ ends also display a stronger dependence on Na+ concentration. In lower Na+ environment, the 3’ ends were more destabilizing than in higher salt environment suggesting a more significant electrostatic component of the destabilizing interactions. Analysis of thermodynamic parameters of dangling ended duplexes as a function of Na+ concentration indicated the 3' dangling ends behave differently than 5' dangling ended and blunt-ended duplexes. Molecules with one 5' and one 3' dangling end showed variation in excess specific heat capacity (ΔCp) when compared to the blunt-ended molecule, while the molecules with two 5’ ends had ΔCp values that were essentially the same as blunt-ended duplexes. These observations suggested differences exist in duplexes with 3’ and 5’ dangling ends, which are interpreted in terms of composite differences in interactions with Na+, solvent, and terminal base pairs of the duplex.
机译:差示扫描量热法(DSC)融解分析是在27个短双链DNA双链体上进行的,这些双链体含15至25个碱基对。实验双工分为两类,包含两个5'悬挂端或一个5'和一个3'悬挂端。双链体区域从25个碱基对逐渐减少,同时悬空末端的长度从1个碱基增加到10个碱基。 15至25个碱基对的平末端双链体用作对照。还检查了另一组包含21个碱基对双链体和单个4个碱基悬空末端的分子。在不同浓度的钠离子(Na +)下测量DSC熔解曲线。通过这些测量,评估了5'和3'悬挂端的热力学参数,作为悬挂端长度的函数。发现5'端略微稳定,但基本恒定,而3'端随着悬空端长度的增加而不稳定。 3’末端也显示出对Na +浓度的更强依赖性。在较低的Na +环境中,3'端比在较高盐环境中的不稳定程度更高,这表明该不稳定相互作用中更重要的静电成分。悬挂末端双链体的热力学参数作为Na +浓度的函数分析表明,3'悬挂末端的行为不同于5'悬挂末端和钝端的双链。与钝端分子相比,具有一个5'和一个3'悬空端的分子表现出过量比热容(ΔCp)的变化,而具有两个5'端分子的分子具有与钝端基本相同的ΔCp值双工。这些观察结果表明,在3'和5'悬空末端的双链体中存在差异,这可以根据与双链体的Na +,溶剂和末端碱基对相互作用的复合差异来解释。

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