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新型依赖过渡金属的脱氧核酶作为高效核酸内切酶和选择性金属生物传感器。

New transition-metal-dependent DNAzymes as efficient endonucleases and as selective metal biosensors.

作者信息

Lu Yi

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, USA.

出版信息

Chemistry. 2002 Oct 18;8(20):4589-96.

Abstract

Like proteins and RNA molecules, many DNA molecules have now been shown to catalyze a variety of reactions and are thus called DNAzymes. With limited building blocks, DNAzymes need to recruit other cofactors in order to match other enzymes in terms of reaction diversity and catalytic efficiency. Several unique properties make transition-metal ions an ideal choice of cofactor for DNAzymes. Indeed, new DNAzymes that bind transition-metal ions with high affinity and selectivity have been obtained through the use of a powerful combinatorial biology tool called in vitro selection. This accomplishment now makes it possible to obtain different classes of metallo-DNAzymes in the laboratory within a short period of time. It also offers a rare opportunity to compare and contrast structural and functional properties of metal-binding sites in proteins and in DNAzymes. The resulting transition-metal-dependent DNAzymes have displayed high activity toward cleavage of DNA and RNA and thus hold promise for their biochemical and pharmaceutical applications. Finally, the use of DNAzymes as a new class of highly sensitive and selective biosensors for metal ions has been demonstrated recently.

摘要

与蛋白质和RNA分子一样,现在已证明许多DNA分子能催化多种反应,因此被称为脱氧核酶。由于构建模块有限,脱氧核酶需要招募其他辅助因子,以便在反应多样性和催化效率方面与其他酶相匹配。几种独特的特性使过渡金属离子成为脱氧核酶理想的辅助因子选择。事实上,通过使用一种称为体外筛选的强大组合生物学工具,已经获得了能以高亲和力和选择性结合过渡金属离子的新型脱氧核酶。这一成果现在使得在短时间内在实验室中获得不同类别的金属脱氧核酶成为可能。它还提供了一个难得的机会,来比较和对比蛋白质和脱氧核酶中金属结合位点的结构和功能特性。由此产生的依赖过渡金属的脱氧核酶已显示出对DNA和RNA切割的高活性,因此在其生化和药物应用方面具有前景。最后,最近已证明将脱氧核酶用作一类新型的对金属离子高度敏感和选择性的生物传感器。

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