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C(6')-功能化三环 DNA 的合成、配对和细胞摄取特性。

Synthesis, pairing, and cellular uptake properties of C(6')-functionalized tricyclo-DNA.

机构信息

Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, CH-3012, Bern, Switzerland.

出版信息

J Org Chem. 2012 May 18;77(10):4566-77. doi: 10.1021/jo300648u. Epub 2012 May 7.

Abstract

Tricyclo-DNA (tc-DNA) is a promising candidate for oligonucleotide-based therapeutic applications exhibiting increased affinity to RNA and increased resistance to nucleases. However, as many other oligonucleotide analogs, tc-DNA does not readily cross cell membranes. We wished to address this issue by preparing a prodrug of tc-DNA containing a metabolically labile group at C(6') that promotes cellular uptake. Two monomeric nucleoside building blocks bearing an ester function at C(6') (tc(ee)-T and tc(hd)-T) were synthesized starting from a known C(6') functionalized bicyclic sugar unit to which the cyclopropane ring was introduced via carbene addition. NIS-mediated nucleosidation of the corresponding glycal with in situ persilylated thymine afforded the β-iodonucleoside exclusively that was dehalogenated via radical reduction. Diversity in the ester function was obtained by hydrolysis and reesterification. The two nucleosides were subsequently incorporated into DNA or tc-DNA by standard phosphoramidite chemistry. The reactivity of the ester function during oligonucleotide deprotection was explored and the corresponding C(6') amide, carboxylic acid, or unchanged ester functions were obtained, depending on the deprotection conditions. Compared to unmodified DNA, these tc-DNA derivatives increased the stability of duplexes investigated with ΔT(m)/mod of +0.4 to +2.0 °C. The only destabilizing residue was tc(hd)-T, most likely due to self-aggregation of the lipophilic side chains in the single stranded oligonucleotide. A decamer containing five tc(hd)-T residues was readily taken up by HeLa and HEK 293T cells without the use of a transfection agent.

摘要

三环 DNA(tc-DNA)是一种很有前途的候选寡核苷酸治疗药物,它对 RNA 的亲和力增加,对核酸酶的抵抗力增强。然而,与许多其他寡核苷酸类似物一样,tc-DNA 不易穿过细胞膜。我们希望通过制备一种 tc-DNA 的前药来解决这个问题,该前药在 C(6')位含有一个代谢不稳定的基团,以促进细胞摄取。我们从一种已知的 C(6')功能化的双环糖单元开始,合成了两个在 C(6')位带有酯基的单体核苷构建块(tc(ee)-T 和 tc(hd)-T),通过卡宾加成将环丙烷环引入其中。用 NIS 介导的相应糖醛与原位硅烷化胸腺嘧啶进行核苷化,仅得到β-碘代核苷,该核苷通过自由基还原脱卤。通过水解和再酯化获得酯基的多样性。然后,通过标准亚磷酰胺化学将这两种核苷掺入 DNA 或 tc-DNA 中。研究了酯基在寡核苷酸脱保护过程中的反应性,得到了相应的 C(6')酰胺、羧酸或未改变的酯基,这取决于脱保护条件。与未修饰的 DNA 相比,这些 tc-DNA 衍生物增加了所研究的双链体的稳定性,ΔT(m)/mod 为+0.4 至+2.0°C。唯一不稳定的残基是 tc(hd)-T,这很可能是由于疏水性侧链在单链寡核苷酸中自聚集的原因。一个包含五个 tc(hd)-T 残基的十聚体在没有转染剂的情况下很容易被 HeLa 和 HEK 293T 细胞摄取。

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