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Electrostatic free energy landscapes for nucleic acid helix assembly

机译:核酸螺旋组装的静电自由能态势

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Metal ions are crucial for nucleic acid folding. From the free energy landscapes, we investigate the detailed mechanism for ion-induced collapse for a paradigm system: loop-tethered short DNA helices. We find that Na+ and Mg2+ play distinctive roles in helix-helix assembly. High [Na+] (> 0.3 M) causes a reduced helix-helix electrostatic repulsion and a subsequent disordered packing of helices. In contrast, Mg2+ of concentration > 1 mM is predicted to induce helix-helix attraction and results in a more compact and ordered helix-helix packing. Mg2+ is much more efficient in causing nucleic acid compaction. In addition, the free energy landscape shows that the tethering loops between the helices also play a significant role. A flexible loop, such as a neutral loop or a polynucleotide loop in high salt concentration, enhances the close approach of the helices in order to gain the loop entropy. On the other hand, a rigid loop, such as a polynucleotide loop in low salt concentration, tends to de-compact the helices. Therefore, a polynucleotide loop significantly enhances the sharpness of the ion-induced compaction transition. Moreover, we find that a larger number of helices in the system or a smaller radius of the divalent ions can cause a more abrupt compaction transition and a more compact state at high ion concentration, and the ion size effect becomes more pronounced as the number of helices is increased.
机译:金属离子对于核酸折叠至关重要。从自由能景观中,我们研究了离子对范式系统崩溃的详细机制:环系短DNA螺旋。我们发现Na +和Mg2 +在螺旋-螺旋装配中起着独特的作用。高[Na +](> 0.3 M)会导致减少的螺旋-螺旋静电排斥力,并随后导致无序堆积螺旋。相反,浓度> 1 mM的Mg2 +预计会诱导螺旋-螺旋吸引,并导致更紧凑和有序的螺旋-螺旋堆积。 Mg2 +在引起核酸紧缩方面更为有效。此外,自由能态势表明,螺旋之间的束缚环也起着重要作用。柔性环,例如高盐浓度的中性环或多核苷酸环,增强了螺旋的紧密接近,从而获得了环的熵。另一方面,刚性环,例如低盐浓度下的多核苷酸环,倾向于使螺旋解压缩。因此,多核苷酸环显着增强了离子诱导的压实转变的清晰度。此外,我们发现,在高离子浓度下,系统中较大的螺旋数或较小的二价离子半径会导致更突然的压实转变和更致密的状态,并且随着尺寸的增加,离子尺寸效应变得更加明显。螺旋增加。

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