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Weizmann Group

Synthetic nucleic acids and photothermal nanomaterials design group

Endonuclease-based logic gates and sensors using magnetic force-amplified readout of DNA scission on cantilevers

Yossi Weizmann, Roey Elnathan, Oleg Lioubashevski, Itamar Willner

The endonuclease scission of magnetic particles functionalized with sequence-specific DNAs, which are associated on cantilevers, is followed by the magnetic force-amplified readout of the reactions by the nano-mechanical deflection/retraction of the cantilevers. The systems are employed to develop AND or OR logic gates and to detect single base mismatch specificity of the endonucleases. The two endonucleases EcoRI (EA) and Ascl (E B) are used as inputs. The removal of magnetic particles linked to the cantilever by the duplexes 1/1a and 2/2a via the simultaneous cleavage of the DNAs by EA and EB leads to the retraction of the magnetically deflected cantilever and to the establishment of the "AND" gate. The removal of the magnetic particles linked to the cantilevers by the duplex 3/3a by either EA or EB leads to the retraction of the magnetically deflected cantilever and to the establishment of the "OR" gate. The magnetic force-amplified readout of endonuclease activities is also employed to reveal single base mismatch specificity of the biocatalysts.

Publication language English
Pages 12666-12672
Journal Journal of the American Chemical Society
Volume 127
Issue number 36
Publication status Published - 14.09.2005

ASJC Scopus subject areas

Catalysis
General Chemistry
Biochemistry
Colloid and Surface Chemistry
Access to Document
10.1021/ja0533287
Other files and links
Link to publication in Scopus