Shikiya Ronald, Li Jian-Sen, Gold Barry, Marky Luis A
Department of Pharmaceutical Sciences, University of Nebraska Medical Center, 986025 Nebraska Medical Center, Omaha, Nebraska 68198-6025, USA.
Biochemistry. 2005 Sep 20;44(37):12582-8. doi: 10.1021/bi050897i.
We have investigated the unfolding thermodynamics for incorporating cationic side chains in the Dickerson-Drew dodecamer duplex. Incorporation of two 3-aminopropyl-2'-deoxyuridine residues (one on each self-complementary strand) lowers the stability of the duplex. This reduction is driven by unfavorable heat contributions due to the removal of electrostricted water and higher exposure of polar and nonpolar atomic groups that immobilize structural water. These cationic chains effectively remove counterions from the major groove, neutralizing some negatively charged phosphates. The overall results are consistent with the NMR solution of the modified duplex that showed a small bend at each modified site.
我们研究了在Dickerson-Drew十二聚体双链体中引入阳离子侧链的解折叠热力学。引入两个3-氨丙基-2'-脱氧尿苷残基(每条自互补链上一个)会降低双链体的稳定性。这种降低是由不利的热贡献驱动的,这是由于电收缩水的去除以及固定结构水的极性和非极性原子基团的更高暴露。这些阳离子链有效地从大沟中去除抗衡离子,中和了一些带负电荷的磷酸盐。总体结果与修饰双链体的核磁共振溶液一致,该溶液显示在每个修饰位点有一个小弯曲。