Novel strategy for DNA aptamers inhibiting enzymatic activity using algorithm mimicking evolution.

Kazunori Ikebukuro, Yuji Okumura, Koichi Sumikura, Isao Karube
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引用次数: 2

Abstract

We screened the DNA aptamer inhibiting thrombin with novel method using algorithm mimicking evolution. For screening, we first randomly designed and synthesized ten 15-mer oligonucleotides supposed to form G-quartet structure and then measured the inhibitory activity for thrombin. The aptamers showing the high activities were selected and we shuffled and mutated those sequences in silico to generate 10 new sequences of aptamers for next generation. After repeating 5 cycles, we successfully obtained the same aptamers reported previously showing high inhibitory activity. In addition, we added 8-mer oligonucleotides to the both 5' and 3' ends of the selected 15-mer aptamer and then repeated evolution in silico. After 2 cycles, we were able to obtain the aptamer showing better inhibitory activity than the 15-mer aptamer.

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利用模拟进化算法的DNA适体抑制酶活性的新策略。
采用模拟进化算法筛选抑制凝血酶的DNA适体。为了筛选,我们首先随机设计并合成了10个应该形成g -四重奏结构的15-mer寡核苷酸,然后测量了对凝血酶的抑制活性。筛选出具有较高活性的适体,对其序列进行计算机重组和突变,生成10个新的适体序列用于下一代。重复5个循环后,我们成功获得了与之前报道的相同的具有高抑制活性的适体。此外,我们在选择的15-mer适配体的5'和3'端添加8-mer寡核苷酸,然后在硅中重复进化。经过2个周期后,我们获得了比15-mer适配体具有更好抑制活性的适配体。
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