Mei Shirley H J, Liu Zhongjie, Brennan John D, Li Yingfu
Department of Biochemistry, McMaster University, 1200 Main Street West, Hamilton, Ontario, L8N 3Z5 Canada.
J Am Chem Soc. 2003 Jan 15;125(2):412-20. doi: 10.1021/ja0281232.
DNA enzymes are single-stranded DNA molecules with catalytic capabilities that are isolated from random-sequence DNA libraries by "in vitro selection". This new class of catalytic biomolecules has the potential of being used as unique molecular tools in a variety of innovative applications. Here we describe the creation and characterization of an RNA-cleaving autocatalytic DNA, DEC22-18, that uniquely links chemical catalysis with real-time fluorescence signaling capability in the same molecule. A trans-acting DNA molecule, DET22-18, was also developed from DEC22-18 that behaves as a true enzyme with a k(cat) of approximately 7 min(-1)-a rate constant that is the second largest ever reported for a DNA enzyme. It cleaves a chimeric RNA/DNA substrate at the lone RNA linkage surrounded by a closely spaced fluorophore-quencher pair-a unique structure that permits the synchronization of the chemical cleavage with fluorescence signaling. DET22-18 has a stem-loop structure and can be conjugated with DNA aptamers to form allosteric deoxyribozyme biosensors.
DNA酶是具有催化能力的单链DNA分子,通过“体外筛选”从随机序列DNA文库中分离得到。这类新型催化生物分子有潜力在各种创新应用中用作独特的分子工具。在此,我们描述了一种RNA切割自催化DNA即DEC22 - 18的构建与特性,它在同一分子中将化学催化与实时荧光信号传导能力独特地联系起来。一种反式作用DNA分子DET22 - 18也由DEC22 - 18开发而来,它表现为一种真正的酶,催化常数k(cat)约为7 min⁻¹,这是报道的DNA酶中第二大的速率常数。它在由紧密间隔的荧光团 - 猝灭剂对包围的唯一RNA连接处切割嵌合RNA/DNA底物,这种独特结构使得化学切割与荧光信号传导能够同步。DET22 - 18具有茎环结构,可与DNA适配体缀合形成变构脱氧核酶生物传感器。