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镁离子调控三链连接点(3WJ)-原核核糖核酸(PRNA)构建可控RNA纳米颗粒药物递送平台。

Mg Ions Regulating 3WJ-PRNA to Construct Controllable RNA Nanoparticle Drug Delivery Platforms.

作者信息

Chen Le, Li Jingyuan

机构信息

Zhejiang Province Key Laboratory of Quantum Technology and Device, School of Physics, Zhejiang University, Zheda Road 38, Hangzhou 310027, China.

出版信息

Pharmaceutics. 2022 Jul 6;14(7):1413. doi: 10.3390/pharmaceutics14071413.

Abstract

RNA nanotechnology has shown great progress over the past decade. Diverse controllable and multifunctional RNA nanoparticles have been developed for various applications in many areas. For example, RNA nanoparticles can participate in the construction of drug delivery nanoplatforms. Recently, a three-way junction packaging RNA (3WJ-pRNA) has been exploited for its characteristics of self-assembly and ultrahigh stability in many aspects. 3WJ-pRNA is the 3WJ part of bacteriophage φ29 pRNA and joins different components of φ29 as a linker element. In this work, we used all-atom MD simulation to study the thermal stability of 3WJ-pRNA and the underlying mechanisms. While 3WJ-pRNA can remain in its original structure without Mg ions at room temperature, only Mg-bound 3WJ-pRNA still maintains its initial three-way junction structure at a higher temperature ( = 400 K). The Mg-free 3WJ-pRNA undergoes dramatic deformation under high temperature condition. The contribution of Mg ions can be largely attributed to the protective effect of two Mg clamps on the hydrogen bond and base stacking interactions in helices. Taken together, our results reveal the extraordinary thermal stability of 3WJ-pRNA, which can be regulated by Mg ions. Comprehensive depictions of thermal stability of pRNA and the regulation mechanism are helpful for the further development of controllable RNA nanoparticle drug delivery platforms.

摘要

在过去十年中,RNA纳米技术取得了巨大进展。已经开发出各种可控且多功能的RNA纳米颗粒,用于许多领域的各种应用。例如,RNA纳米颗粒可参与药物递送纳米平台的构建。最近,一种三向连接包装RNA(3WJ-pRNA)因其在许多方面的自组装特性和超高稳定性而被开发利用。3WJ-pRNA是噬菌体φ29 pRNA的3WJ部分,作为连接元件连接φ29的不同组分。在这项工作中,我们使用全原子分子动力学模拟来研究3WJ-pRNA的热稳定性及其潜在机制。虽然3WJ-pRNA在室温下没有镁离子时可以保持其原始结构,但只有与镁结合的3WJ-pRNA在较高温度(= 400 K)下仍能保持其初始的三向连接结构。不含镁的3WJ-pRNA在高温条件下会发生剧烈变形。镁离子的作用在很大程度上可归因于两个镁钳对螺旋中氢键和碱基堆积相互作用的保护作用。综上所述,我们的结果揭示了3WJ-pRNA非凡的热稳定性,其可由镁离子调节。对pRNA热稳定性及其调节机制的全面描述有助于可控RNA纳米颗粒药物递送平台的进一步发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0242/9320661/07d3e132b6c9/pharmaceutics-14-01413-g001.jpg

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