A gold-nanoparticle-based real-time colorimetric screening method for endonuclease activity and inhibition
A gold-nanoparticle-based real-time colorimetric screening method for endonuclease activity and inhibition
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DOI:
10.1002/anie.200605249
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发表时间:
2007-01-01
影响因子:
16.6
通讯作者:
Mirkin, Chad A.
中科院分区:
文献类型:
--
作者:
Xu, Xiaoyang;Han, Min Su;Mirkin, Chad A.
Nucleic acids act as the carriers of genetic information, and most organisms contain a type of enzymes called endonucleases,[1] which can hydrolyze the phosphodiester linkages in the nucleic acid backbone. These nucleases are important for many processes involving the replication, repair, and recombination of nucleic acids. Endonucleases such as DNA gyrase and virus integrase play key roles in biological process such as the topological altering of DNA and the insertion of proviral DNA into host chromosomal DNA.[2] Molecules that inhibit endonucleases are therefore considered candidates for a variety of antimicrobial and antiviral drugs. As such, methods for the high-throughput screening of different nuclease inhibitors have become a central part of the drug-development process.[3]The most widely used assays include those based on the use of chromogenic or fluorogenic substrates to produce a spectrophotometric signal.[4] In many cases, however, it is desirable to measure the reaction between an enzyme and a well-defined nucleic acid substrate of interest, as opposed to a fluorogenic or chromogenic derivative of that substrate. Historically, endonuclease activity has been screened by viscometry, radioactive labeling, and gel electrophoresis, in addition to the more recent fluorescence-based approaches.[5] Most of these protocols are time consuming and do not provide a measure of endonuclease activity in real time. Of these methods, only fluorescence is appreciably used for highthroughput screening, and the fluorescence-based approach has just recently been implemented.[6] Herein, we report an operationally simple colorimetric endonuclease-inhibition assay, which enables the real-time monitoring of endonuclease activity and the simultaneous determination of the efficiencies of endonuclease inhibitors (eg, DNA-binding molecules).[7] The new method relies on polymeric aggregates of DNA-functionalized gold nanoparticles (DNA-AuNPs) with DNA-duplex interconnects.[8] DNA-AuNPs have been used previously to detect DNA, proteins, metal ions, and DNA-binding molecules.[9] Others