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[锁核酸研究进展]

[Progress in locked nucleic acid research].

作者信息

Li Sheng-Mao, Xu Xiang, Liang Hua-Ping, Li Lei

机构信息

Researsh Institute of Surgery, Third Military Medical University, Chongqing 400042.

出版信息

Sheng Li Ke Xue Jin Zhan. 2003 Oct;34(4):319-23.

Abstract

Locked nucleic acid (LNA) is a novel oligonucleotide analogue in which 2'-O and 4'-C positions in the b-D-ribofuranosyl ring are joined via an O-methylene, S-methylene or amino-methylene moiety, locked in a C3'-endol3E north (N)-type furanose conformation. LNAs posses many properties, such as extraordinarily high hybridize affinities for complementary DNA/RNA sequences, remarkable antisense activity, nuclease resistance, good aqueous solubility and none detactable toxicity, et al. LNAs is a most promising molecule for development of diagnostics and therapeutics. For example, apply LNAs to single--nucleotide polymorphisms genotyping, telomerase activity have been efficiently suppressed by LNA oligomers, efficient cleavage of highly structured RNA has been achieved using LNA-modified DNAzymes (LNAzymes), and so on.

摘要

锁核酸(LNA)是一种新型的寡核苷酸类似物,其中β-D-呋喃核糖环中的2'-O和4'-C位置通过O-亚甲基、S-亚甲基或氨基亚甲基部分连接,锁定在C3'-内型3E北(N)型呋喃糖构象中。LNA具有许多特性,例如对互补DNA/RNA序列具有极高的杂交亲和力、显著的反义活性、核酸酶抗性、良好的水溶性且无明显毒性等。LNA是诊断和治疗开发中最有前途的分子。例如,将LNA应用于单核苷酸多态性基因分型、LNA寡聚物已有效抑制端粒酶活性、使用LNA修饰的DNA酶(LNAzyme)已实现对高度结构化RNA的有效切割等。

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