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治疗性磷酰胺吗啉代寡核苷酸:物理性质、溶液结构和折叠热力学

Therapeutic phosphorodiamidate morpholino oligonucleotides: Physical properties, solution structures, and folding thermodynamics.

作者信息

Maksudov Farkhad, Kliuchnikov Evgenii, Pierson Daniel, Ujwal M L, Marx Kenneth A, Chanda Arani, Barsegov Valeri

机构信息

Department of Chemistry, University of Massachusetts, Lowell, MA 01854, USA.

Technical Operations, Sarepta Therapeutics, Cambridge, MA 02142, USA.

出版信息

Mol Ther Nucleic Acids. 2023 Feb 14;31:631-647. doi: 10.1016/j.omtn.2023.02.007. eCollection 2023 Mar 14.

Abstract

Elucidating the structure-function relationships for therapeutic RNA mimicking phosphorodiamidate morpholino oligonucleotides (PMOs) is challenging due to the lack of information about their structures. While PMOs have been approved by the US Food and Drug Administration for treatment of Duchenne muscular dystrophy, no structural information on these unique, charge-neutral, and stable molecules is available. We performed circular dichroism and solution viscosity measurements combined with molecular dynamics simulations and machine learning to resolve solution structures of 22-mer, 25-mer, and 30-mer length PMOs. The PMO conformational dynamics are defined by the competition between non-polar nucleobases and uncharged phosphorodiamidate groups for shielding from solvent exposure. PMO molecules form non-canonical, partially helical, stable folded structures with a small 1.4- to 1.7-nm radius of gyration, low count of three to six base pairs and six to nine base stacks, characterized by -34 to -51 kcal/mol free energy, -57 to -103 kcal/mol enthalpy, and -23 to -53 kcal/mol entropy for folding. The 4.5- to 6.2-cm/g intrinsic viscosity and Huggins constant of 4.5-9.9 are indicative of extended and aggregating systems. The results obtained highlight the importance of the conformational ensemble view of PMO solution structures, thermodynamic stability of their non-canonical structures, and concentration-dependent viscosity properties. These principles form a paradigm to understand the structure-properties-function relationship for therapeutic PMOs to advance the design of new RNA-mimic-based drugs.

摘要

由于缺乏有关治疗性RNA模拟磷二酰胺吗啉代寡核苷酸(PMO)结构的信息,阐明其结构-功能关系具有挑战性。虽然PMO已被美国食品药品监督管理局批准用于治疗杜氏肌营养不良症,但尚无关于这些独特、电荷中性且稳定分子的结构信息。我们结合分子动力学模拟和机器学习进行了圆二色性和溶液粘度测量,以解析22聚体、25聚体和30聚体长度的PMO的溶液结构。PMO的构象动力学由非极性核碱基和不带电荷的磷二酰胺基团之间为避免暴露于溶剂而进行的竞争所定义。PMO分子形成非经典的、部分螺旋的、稳定的折叠结构,其回转半径小,为1.4至1.7纳米,三到六个碱基对和六到九个碱基堆叠的数量少,其折叠的自由能为-34至-51千卡/摩尔,焓为-57至-103千卡/摩尔,熵为-23至-53千卡/摩尔。4.5至6.2厘米/克的特性粘度和4.5至9.9的哈金斯常数表明是伸展和聚集体系。所得结果突出了PMO溶液结构的构象系综观点、其非经典结构的热力学稳定性以及浓度依赖性粘度特性的重要性。这些原理构成了一个范例,用于理解治疗性PMO的结构-性质-功能关系,以推进新型基于RNA模拟物的药物设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1e0/9996446/01ea6cf59a55/fx1.jpg

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