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Logic gates and antisense DNA devices operating on a translator nucleic acid scaffold

机译:在翻译核酸支架上运行的逻辑门和反义DNA装置

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摘要

A series of logic gates, "AND", "OR", and "XOR", are designed using a DNA scaffold that includes four "footholds" on which the logic operations are activated. Two of the footholds represent input-recognition strands, and these are blocked by complementary nucleic acids, whereas the other two footholds are blocked by nucleic acids that include the horseradish peroxidase (HRP)-mimicking DNAzyme sequence. The logic gates are activated by either nucleic acid inputs that hybridize to the respective "footholds", or by low-molecular-weight inputs (adenosine monophosphate or cocaine) that yield the respective aptamersubstrate complexes. This results in the respective translocation of the blocking nucleic acids to the footholds carrying the HRP-mimicking DNAzyme sequence, and the concomitant release of the respective DNAzyme. The released product-strands then self-assemble into the hemin/G-quadruplex-HRP-mimicking DNAzyme that biocatalyzes the formation of a colored product and provides an output signal for the different logic gates.The principle of the logic operation is, then, implemented as a possible paradigm for future nanomedicine. The nucleic acid inputs that bind to the blocked footholds result in the translocation of the blocking nucleic acids to the respective footholds carrying the antithrombin aptamer. The released aptamer inhibits, then, the hydrolytic activity of thrombin. The system demonstrates the regulation of a biocatalytic reaction by a translator system activated on a DNA scaffold.
机译:使用包括四个“立足点”的DNA支架设计了一系列逻辑门“ AND”,“ OR”和“ XOR”,在这些立足点上激活了逻辑运算。两个立足点代表输入识别链,它们被互补核酸封闭,而其他两个立足点被包括辣根过氧化物酶(HRP)模仿DNAzyme序列的核酸封闭。逻辑门通过与相应“立足点”杂交的核酸输入或通过产生相应的适体-底物复合物的低分子量输入(单磷酸腺苷或可卡因)来激活。这导致阻断核酸各自易位至携带模仿HRP的DNA核酶序列的立足点,并伴随着各个DNA核酶的释放。然后释放的产物链自组装为可与生物素/ G-四链体-HRP相似的DNA酶,该酶可生物催化有色产物的形成并为不同的逻辑门提供输出信号。作为未来纳米医学的可能范例而实施。结合到封闭的立足点的核酸输入导致封闭核酸易位到携带抗凝血酶适体的各个立足点。释放的适体随后抑制了凝血酶的水解活性。该系统证明了通过在DNA支架上激活的翻译系统对生物催化反应的调节。

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