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1.
Anal Chem ; 89(23): 12888-12895, 2017 12 05.
Artigo em Inglês | MEDLINE | ID: mdl-29099172

RESUMO

We report here the concept of a self-powered, target-triggered DNA motor constructed by engineering a DNAzyme to adapt into binding-induced DNA assembly. An affinity ligand was attached to the DNAzyme motor via a DNA spacer, and a second affinity ligand was conjugated to the gold nanoparticle (AuNP) that was also decorated with hundreds of substrate strands serving as a high-density, three-dimensional track for the DNAzyme motor. Binding of a target molecule to the two ligands induced hybridization between the DNAzyme and its substrate on the AuNP, which are otherwise unable to spontaneously hybridize. The hybridization of DNAzyme with the substrate initiates the cleavage of the substrate and the autonomous movement of the DNAzyme along the AuNP. Each moving step restores the fluorescence of a dye molecule, enabling monitoring of the operation of the DNAzyme motor in real time. A simple addition or depletion of the cofactor Mg2+ allows for fine control of the DNAzyme motor. The motor can translate a single binding event into cleavage of hundreds of substrates, enabling amplified detection of proteins at room temperature without the need for separation.


Assuntos
DNA Catalítico/química , Estreptavidina/análise , Trombina/análise , Aptâmeros de Nucleotídeos/química , Técnicas Biossensoriais/métodos , Biotina/química , DNA Catalítico/genética , Fluorescência , Ouro/química , Humanos , Limite de Detecção , Nanopartículas Metálicas/química , Hibridização de Ácido Nucleico , Estreptavidina/química , Trombina/química
3.
Angew Chem Int Ed Engl ; 54(48): 14326-30, 2015 Nov 23.
Artigo em Inglês | MEDLINE | ID: mdl-26457803

RESUMO

We introduce the concept and operation of a binding-induced DNA nanomachine that can be activated by proteins and nucleic acids. This new type of nanomachine harnesses specific target binding to trigger assembly of separate DNA components that are otherwise unable to spontaneously assemble. Three-dimensional DNA tracks of high density are constructed on gold nanoparticles functionalized with hundreds of single-stranded oligonucleotides and tens of an affinity ligand. A DNA swing arm, free in solution, is linked to a second affinity ligand. Binding of a target molecule to the two ligands brings the swing arm to AuNP and initiates autonomous, stepwise movement of the swing arm around the AuNP surface. The movement of the swing arm, powered by enzymatic cleavage of conjugated oligonucleotides, cleaves hundreds of oligonucleotides in response to a single binding event. We demonstrate three nanomachines that are specifically activated by streptavidin, platelet-derived growth factor, and the Smallpox gene. Substituting the ligands enables the nanomachine to respond to other molecules. The new nanomachines have several unique and advantageous features over DNA nanomachines that rely on DNA self-assembly.


Assuntos
DNA/química , Nanotecnologia , Ácidos Nucleicos/química , Proteínas/química
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