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用于自动合成吗啉代反义寡核苷酸及其嵌合体的亚磷酰胺平台。

Phosphoramidite Platform for the Automated Synthesis of Morpholino Antisense Oligonucleotides and Their Chimeras.

作者信息

Ghosh Atanu, Mukherjee Maria, Banerjee Arpan, Acharya Shreyasi, Sinha Surajit

机构信息

School of Applied and Interdisciplinary Sciences, Indian Association for the Cultivation of Science, Kolkata, India.

Institute of Organic Chemistry, Julius-Maximilians-Universität Würzburg, Würzburg, Germany.

出版信息

Curr Protoc. 2025 Jun;5(6):e70162. doi: 10.1002/cpz1.70162.

Abstract

Phosphorodiamidate morpholino oligonucleotides (PMOs) are antisense oligonucleotides that modulate gene expression through a steric blocking mechanism. Despite their increasing use in antisense therapeutics, the synthesis of PMOs remains challenging, thus limiting their accessibility. As a result, a modular synthesis protocol for PMOs, compatible with DNA/RNA synthesizers, is highly anticipated to facilitate the development of next-generation PMO chimeras incorporating other oligonucleotide backbones with proven therapeutic efficacy. In this article, we demonstrate a streamlined 5'→3' phosphoramidite approach for synthesizing PMOs using 3'-N-MMTr (monomethoxytrityl)-5'-Bu (tert-butyl)-morpholino phosphoramidites and 3'-N-Tr(trityl)-5'-CE(cyanoethyl)-morpholino phosphoramidites, enabling the synthesis of thiophosphoramidate (TMO) and phosphoramidate (MO) morpholino oligonucleotides. The phosphoramidite building blocks were synthesized from 5'-OH morpholino monomers derived from commercially available ribonucleosides. The solid-phase oligonucleotide synthesis was carried out in acetonitrile solvent on controlled pore glass (CPG) support using an automated DNA/RNA synthesizer, resulting in excellent overall yields. The synthesis process also incorporated regular amide protecting groups for the exocyclic amines of cytidine and adenosine, as well as dimethylformamidine for guanosine. The solid-phase synthesis cycle consists of the following steps: (a) deblocking the 3'-N protecting group of the morpholino ring, (b) neutralization, (c) coupling and oxidation of the 5'-phosphoramidite (oxidative coupling), and (d) capping unreacted morpholino-NH. Afterward, cleavage from the solid support is achieved through treatment with aqueous ammonia. This method provides a convenient and efficient approach for synthesizing various biologically relevant antisense oligonucleotide (ASO) designs, including PMO-TMO and PMO-MO chimeras, with reproducible and high yields. © 2025 Wiley Periodicals LLC. Basic Protocol 1: Synthesis of 3'-N-Tr-5'-CE-morpholino phosphoramidites Basic Protocol 2: Synthesis of 3'-N-MMTr-5'-Bu-morpholino phosphoramidites Basic Protocol 3: Solid phase synthesis of PMO, TMO, PMO-TMO, and other chimeras in an automated DNA synthesizer Basic Protocol 4: HPLC purification of synthesized ONs.

摘要

磷酰胺吗啉代寡核苷酸(PMO)是一类反义寡核苷酸,通过空间位阻机制调节基因表达。尽管它们在反义治疗中的应用越来越广泛,但PMO的合成仍然具有挑战性,因此限制了它们的可及性。因此,人们高度期待一种与DNA/RNA合成仪兼容的PMO模块化合成方案,以促进包含其他具有已证实治疗效果的寡核苷酸骨架的下一代PMO嵌合体的开发。在本文中,我们展示了一种简化的5'→3'亚磷酰胺方法,使用3'-N-单甲氧基三苯甲基(MMTr)-5'-叔丁基(Bu)-吗啉代亚磷酰胺和3'-N-三苯甲基(Tr)-5'-氰乙基(CE)-吗啉代亚磷酰胺来合成PMO,从而能够合成硫代磷酰胺(TMO)和磷酰胺(MO)吗啉代寡核苷酸。亚磷酰胺构建块由源自市售核糖核苷的5'-OH吗啉代单体合成。固相寡核苷酸合成在乙腈溶剂中,在可控孔径玻璃(CPG)载体上使用自动DNA/RNA合成仪进行,总体产率优异。合成过程还为胞嘧啶和腺嘌呤的环外胺引入了常规酰胺保护基团,以及为鸟嘌呤引入了二甲基甲脒。固相合成循环包括以下步骤:(a)去除吗啉环的3'-N保护基团;(b)中和;(c)5'-亚磷酰胺的偶联和氧化(氧化偶联);(d)封端未反应的吗啉-NH。之后,通过用氨水进行处理实现从固相载体上的切割。该方法为合成各种与生物学相关的反义寡核苷酸(ASO)设计,包括PMO-TMO和PMO-MO嵌合体,提供了一种方便、高效的方法,产率可重现且高。© 2025威利期刊有限责任公司。基本方案1:3'-N-Tr-5'-CE-吗啉代亚磷酰胺的合成 基本方案2:3'-N-MMTr-5'-Bu-吗啉代亚磷酰胺的合成 基本方案3:在自动DNA合成仪中固相合成PMO、TMO、PMO-TMO和其他嵌合体 基本方案4:合成寡核苷酸的高效液相色谱纯化

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