Methods and compositions for backscattering interferometry
The present invention relates to methods and compositions for enhancing backscattering interferometry (BSI) in detection of biomolecular interactions, particularly to methods and compositions for enhancing BSI utilizing label-free aptamers, and more particularly to methods and compositions for enhancing BSI utilizing high conformational change aptamers, which may change in conformation when the aptamers bind to their target molecules.
1. A non-labeled molecular beacon comprising:
a hairpin aptamer having a non-self-hybridizing loop region and self-hybridizing stem region, said hairpin aptamer comprising a non-naturally occurring sequence comprising the sequence of SEQ ID No. 1;
wherein said self-hybridizing stem region dehybridizes upon binding of said hairpin aptamer to a target molecule to elicit a conformational change in said hairpin aptamer.
2. The non-labeled molecular beacon of claim 1 , wherein said self-hybridizing stem has a hybridized length of between 2 and 6 nucleopairs.
3. The non-labeled molecular beacon of claim 1 , wherein said self-hybridizing stem comprises at least one modulating feature.
4. The non-labeled molecular beacon of claim 3 , wherein said at least one modulating feature selected from the group consisting of mismatch pair and accessory loop formation.
5. The non-labeled molecular beacon of claim 1 , wherein said non-self-hybridizing loop region comprises an aptamer binding region with a specific binding affinity to said target molecule.
6. The non-labeled molecular beacon of claim 1 , wherein said hairpin aptamer comprises at least one modified nucleotide.
7. The non-labeled molecular beacon of claim 1 , wherein said hairpin aptamer binds to tenofovir.