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Bioconjugate chemistry, 2014-10, Vol.25 (10), p.1769-1776
2014
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Details

Autor(en) / Beteiligte
Titel
Rationally Manipulating Aptamer Binding Affinities in a Stem-Loop Molecular Beacon
Ist Teil von
  • Bioconjugate chemistry, 2014-10, Vol.25 (10), p.1769-1776
Ort / Verlag
United States: American Chemical Society
Erscheinungsjahr
2014
Quelle
MEDLINE
Beschreibungen/Notizen
  • Single-stranded DNA sequences that are highly specific for a target ligand are called aptamers. While the incorporation of aptamer sequences into stem-loop molecular beacons has become an essential tool in optical biosensors, the design principles that determine the magnitude of binding affinity and its relationship to placement of the aptamer sequence in the stem-loop architecture are not well defined. By controlled placement of the aptamer along the loop region of the molecular beacon, it is observed that the binding affinity can be tuned over 4 orders of magnitude (1.3 nM – 203 μM) for the Huizenga and Szostak ATP DNA aptamer sequence. It is observed that the K d is enhanced for the fully exposed sequence, with reduced binding affinity when the aptamer is part of the stem region of the beacon. Analysis of the ΔG values indicate a clear correlation between the aptamer hybridized length in the stem and its observed K d. The use of a nanometal surface energy transfer probe method for monitoring ATP binding to the aptamer sequence allows the observation of negative cooperativity between the two ATP binding events. Maintenance of the high binding affinity of this ATP aptamer and the observation of two separate K d’s for ATP binding indicate NSET as an effective, nonmanipulative, optical method for tracking biomolecular changes.
Sprache
Englisch
Identifikatoren
ISSN: 1043-1802
eISSN: 1520-4812
DOI: 10.1021/bc500286r
Titel-ID: cdi_pubmedcentral_primary_oai_pubmedcentral_nih_gov_4198099

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