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磷酸残基的磷酰胍修饰对寡脱氧核糖核苷酸结构和杂交的影响

Effects of Phosphoryl Guanidine Modification of Phosphate Residues on the Structure and Hybridization of Oligodeoxyribonucleotides.

作者信息

Golyshev Victor M, Pyshnyi Dmitrii V, Lomzov Alexander A

机构信息

Institute of Chemical Biology and Fundamental Medicine, Novosibirsk 630090, Russia.

Novosibirsk State University, Novosibirsk 630090, Russia.

出版信息

J Phys Chem B. 2021 Mar 25;125(11):2841-2855. doi: 10.1021/acs.jpcb.0c10214. Epub 2021 Mar 16.

Abstract

Phosphoryl guanidine oligonucleotides (PGOs) are promising tools for biological research and development of biosensors and therapeutics. We performed structural and hybridization analyses of octa-, deca-, and dodecamers with all phosphate residues modified by 1,3-dimethylimidazolidine-2-imine moieties. Similarity of the B-form double helix between native and modified duplexes was noted. In PGO duplexes, we detected a decrease in the proportion of C2'-endo and an increased proportion of C1'-exo sugar conformations of the modified chain. Applicability of the two-state model to denaturation transition of all studied duplexes was proved for the first time. Sequence-dependent effects of this modification on hybridization properties were observed. The thermal stability of PGO complexes is almost native at 100 mM NaCl and slightly increases with decreasing ionic strength. An increase in water activity and dramatic changes in interaction with cations and in solvation of PGOs and their duplexes were noted, resulting in slight elevation of the melting temperature after an ionic-strength decrease from 1 M NaCl down to deionized water. Decreased binding of sodium ions and decreased water solvation were documented for PGOs and their duplexes. In contrast to DNA, the PGO duplex formation leads to a release of several cations. The water shell is significantly more disordered near PGOs and their complexes. Nevertheless, changes in solvation during the formation of native and PGO complexes are similar and indicate that it is possible to develop models for predictive calculations of the thermodynamic properties of phosphoryl guanidine oligomers. Our results may help devise an approach for the rational design of PGOs as novel improved molecular probes and tools for many modern methods involving oligonucleotides.

摘要

磷酰胍寡核苷酸(PGO)是生物研究以及生物传感器和治疗药物研发中很有前景的工具。我们对八聚体、十聚体和十二聚体进行了结构和杂交分析,其中所有磷酸残基都被1,3 - 二甲基咪唑啉 - 2 - 亚胺部分修饰。我们注意到天然双链体和修饰双链体之间B型双螺旋的相似性。在PGO双链体中,我们检测到修饰链的C2'-内型糖构象比例降低,C1'-外型糖构象比例增加。首次证明了两态模型对所有研究双链体变性转变的适用性。观察到这种修饰对杂交特性的序列依赖性影响。在100 mM NaCl条件下,PGO复合物的热稳定性几乎与天然状态相同,并且随着离子强度的降低略有增加。我们注意到水活度增加,以及PGO及其双链体与阳离子相互作用和溶剂化的显著变化,导致离子强度从1 M NaCl降至去离子水后熔解温度略有升高。记录了PGO及其双链体中钠离子结合减少和水溶剂化减少的情况。与DNA不同,PGO双链体的形成会导致释放几种阳离子。在PGO及其复合物附近,水壳的无序程度明显更高。然而,天然复合物和PGO复合物形成过程中的溶剂化变化相似,这表明有可能开发模型来预测磷酰胍寡聚物的热力学性质。我们的结果可能有助于设计一种方法,用于合理设计PGO,使其成为许多涉及寡核苷酸的现代方法的新型改进分子探针和工具。

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