Manufacturing Reusable NAND Logic Gates and Their Initial Circuits for DNA Nanoprocessors

被引:7
|
作者
Molden, Tatiana A. [1 ]
Grillo, Marcella C. [1 ]
Kolpashchikov, Dmitry M. [1 ]
机构
[1] Univ Cent Florida, Chem Dept, 4111 Libra Dr,Phys Sci 255, Orlando, FL 32816 USA
基金
美国国家科学基金会;
关键词
click chemistry; deoxyribozymes; DNA logic gates; DNA nanotechnology; molecular computation;
D O I
10.1002/chem.202003959
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
DNA-based computers can potentially analyze complex sets of biological markers, thereby advancing diagnostics and the treatment of diseases. Despite extensive efforts, DNA processors have not yet been developed due, in part, to limitations in the ability to integrate available logic gates into circuits. We have designed a NAND gate, which is one of the functionally complete set of logic connectives. The gate's design avoids stem-loop-folded DNA fragments, and is capable of reusable operations in RNase H-containing buffer. The output of the gate can be translated into RNA-cleaving activity or a fluorescent signal produced either by a deoxyribozyme or a molecular beacon probe. Furthermore, three NAND-gate-forming DNA strands were crosslinked by click chemistry and purified in a simple procedure that allowed approximate to 10(13) gates to be manufactured in 16 h, with a hands-on time of about 30 min. Two NAND gates can be joined into one association that performs a new logic function simply by adding a DNA linker strand. Approaches developed in this work could contribute to the development of biocompatible DNA logic circuits for biotechnological and medical applications.
引用
收藏
页码:2421 / 2426
页数:6
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