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DNAzyme-mediated catalysis with only guanosine and cytidine nucleotides

机译:DNAzyme介导的仅鸟苷和胞苷核苷酸的催化

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Single-stranded DNA molecules have the capacity to adopt catalytically active structures known as DNAzymes, although the fundamental limits of this ability have not been determined. Starting with a parent DNAzyme composed of all four types of standard nucleotides, we conducted a search of the surrounding sequence space to identify functional derivatives with catalytic cores composed of only three, and subsequently only two types of nucleotides. We provide the first report of a DNAzyme that contains only guanosine and cytidine deoxyribonucleotides in its catalytic domain, which consists of just 13 nucleotides. This DNAzyme catalyzes the Mn(2+)-dependent cleavage of an RNA phosphodiester bond approximately 5300-fold faster than the corresponding uncatalyzed reaction, but approximately 10,000-fold slower than the parent. The demonstration of a catalytic DNA molecule made from a binary nucleotide alphabet broadens our understanding of the fundamental limits of nucleic-acid-mediated catalysis.
机译:单链DNA分子具有采用称为DNAzyme的催化活性结构的能力,尽管这种能力的基本局限性尚未确定。从由所有四种类型的标准核苷酸组成的亲本DNA酶开始,我们进行了周围序列空间的搜索,以鉴定具有仅由三种,随后仅两种类型的核苷酸组成的催化核心的功能性衍生物。我们提供了DNA酶的第一个报告,该酶在其催化结构域中仅包含鸟苷和胞苷脱氧核糖核苷酸,仅由13个核苷酸组成。这种DNA酶催化RNA磷酸二酯键的Mn(2+)依赖裂解比相应的未催化反应快约5300倍,但比其母体慢约10,000倍。由二进制核苷酸字母制成的催化性DNA分子的演示拓宽了我们对核酸介导的催化作用的基本限制的理解。

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