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阿拉伯核糖核酸(ANA)的合成与生物物理性质:ANA-RNA杂交双链体的圆二色光谱、解链温度及核糖核酸酶H敏感性

Synthesis and biophysical properties of arabinonucleic acids (ANA): circular dichroic spectra, melting temperatures, and ribonuclease H susceptibility of ANA.RNA hybrid duplexes.

作者信息

Noronha A M, Wilds C J, Lok C N, Viazovkina K, Arion D, Parniak M A, Damha M J

机构信息

Department of Chemistry, McGill University, Montreal, Quebec, Canada.

出版信息

Biochemistry. 2000 Jun 20;39(24):7050-62. doi: 10.1021/bi000280v.

Abstract

Arabinonucleic acid (ANA), the 2'-epimer of RNA, was synthesized from arabinonucleoside building blocks by conventional solid-phase phosphoramidite synthesis. In addition, the biochemical and physicochemical properties of ANA strands of mixed base composition were evaluated for the first time. ANA exhibit certain characteristics desirable for use as antisense agents. They form duplexes with complementary RNA, direct RNase H degradation of target RNA molecules, and display resistance to 3'-exonucleases. Since RNA does not elicit RNase H activity, our findings establish that the stereochemistry at C2' (ANA versus RNA) is a key determinant in the activation of the enzyme RNase H. Inversion of stereochemistry at C2' is most likely accompanied by a conformational change in the furanose sugar pucker from C3'-endo (RNA) to C2'-endo ("DNA-like") pucker (ANA) [Noronha and Damha (1998) Nucleic Acids Res. 26, 2665-2671; Venkateswarlu and Ferguson (1999) J. Am. Chem. Soc. 121, 5609-5610]. This produces ANA/RNA hybrids whose CD spectra (i.e., helical conformation) are more similar to the native DNA/RNA substrates than to those of the pure RNA/RNA duplex. These features, combined with the fact that ara-2'OH groups project into the major groove of the helix (where they should not interfere with RNase H binding), help to explain the RNase H activity of ANA/RNA hybrids.

摘要

阿拉伯核糖核酸(ANA)是RNA的2'-差向异构体,通过传统的固相亚磷酰胺合成法由阿拉伯核糖核苷构建模块合成。此外,首次对混合碱基组成的ANA链的生化和物理化学性质进行了评估。ANA表现出用作反义剂所需的某些特性。它们与互补RNA形成双链体,引导RNase H对靶RNA分子进行降解,并对3'-核酸外切酶具有抗性。由于RNA不会引发RNase H活性,我们的研究结果表明,C2'位的立体化学(ANA与RNA)是激活RNase H酶的关键决定因素。C2'位立体化学的反转很可能伴随着呋喃糖构象从C3'-内型(RNA)到C2'-内型(“类DNA”)构象(ANA)的变化[诺罗尼亚和达马(1998年)《核酸研究》26卷,2665 - 2671页;文卡特斯瓦鲁和弗格森(1999年)《美国化学会志》121卷,5609 - 5610页]。这产生了ANA/RNA杂交体,其圆二色光谱(即螺旋构象)与天然DNA/RNA底物的光谱比与纯RNA/RNA双链体的光谱更相似。这些特征,再加上阿拉伯糖2'-羟基基团伸向螺旋的大沟(在那里它们不应干扰RNase H的结合)这一事实,有助于解释ANA/RNA杂交体的RNase H活性。

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