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硫代磷酰胺酯吗啉代寡核苷酸及其嵌合体的合成与表征。

Synthesis and Characterization of Thiophosphoramidate Morpholino Oligonucleotides and Chimeras.

机构信息

Department of Chemistry and Biochemistry, University of Colorado at Boulder, Boulder, Colorado 80309, United States.

出版信息

J Am Chem Soc. 2020 Sep 23;142(38):16240-16253. doi: 10.1021/jacs.0c04335. Epub 2020 Sep 11.

Abstract

This Article outlines the optimized chemical synthesis and preliminary biochemical characterization of a new oligonucleotide analogue called thiophosphoramidate morpholinos (TMOs). Their rational design hinges upon integrating two well-studied pharmacophores, namely, phosphorothioates (pS) and morpholinos, to create morpholino-pS hybrid oligonucleotides. Our simple synthesis strategy enables the easy incorporation of morpholino-pS moieties and therapeutically relevant sugar modifications in tandem to create novel oligonucleotide (ON) analogues that are hitherto unexplored in the oligotherapeutics arena. Exclusively TMO-modified ONs demonstrate high stability toward 3'-exonuclease. Hybridization studies show that TMO chimeras consisting of alternating TMO and DNA-pS subunits exhibit higher binding affinity toward complementary RNA relative to the canonical DNA/RNA duplex (∼10 °C). Oligonucleotides that consist entirely of TMO linkages also show higher RNA binding affinity but do not recruit ribonuclease H1 (RNase H1). Chimeric TMO analogues demonstrate high gene silencing efficacy, comparable to that of a chimeric 2'-OMe-pS/pO control, during bioassay screens designed to evaluate their potential as microRNA inhibitors of hsa-miR-15b-5p in HeLa cells.

摘要

本文概述了一种新的寡核苷酸类似物——硫代磷酰胺吗啉(TMO)的优化化学合成和初步生化特性。它们的合理设计取决于整合两种研究充分的药效团,即硫代磷酸酯(pS)和吗啉,以创建吗啉-pS 杂化寡核苷酸。我们的简单合成策略能够轻松地将吗啉-pS 部分和治疗相关的糖修饰同时进行,从而创造出迄今为止在寡核苷酸治疗领域尚未探索过的新型寡核苷酸(ON)类似物。仅 TMO 修饰的 ON 对 3'-核酸外切酶具有很高的稳定性。杂交研究表明,由 TMO 和 DNA-pS 亚基交替组成的 TMO 嵌合体与互补 RNA 的结合亲和力高于经典的 DNA/RNA 双链体(∼10°C)。完全由 TMO 键合的寡核苷酸也显示出更高的 RNA 结合亲和力,但不招募核糖核酸酶 H1(RNase H1)。嵌合 TMO 类似物在设计用于评估其作为 hsa-miR-15b-5p 的 microRNA 抑制剂在 HeLa 细胞中的潜力的生物测定筛选中表现出高基因沉默功效,与 2'-OMe-pS/pO 嵌合对照相当。

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