Livak et al. “Oligonucleotides with fluorescent dyes at opposote ends provide a quenched probe system useful for detecting PCR product and nucleic acid hybridization” PCR Methods and Applications pp. 357-362, 1995.* |
Lee et al. “Allelic discrimination by nick-translation PCR with fluorogemic probes” Nucleic acids research pp. 3761-3766, 1993.* |
Search Report of WO 96/15270 by Livak, (PCT/US95/14882). |
Database WPI, Sect. Ch., Wk. 8608, Derwent Publ. Ltd., London, GB Jan. 1986, JP 5015439 (1993) “Determine Polynucleotide Single Strand Label Luminous Polynucleotide Substance”. |
Agrawal and Zamecnik, “Site Specific Functionalization of Olignucleotides for Attaching Two Different Reporter Groups,” Nucl. Acids Res. 18(18):5419-5423 (1990). |
Cardullo et al., “Detection of Nucleic Acid Hybridization by Nonradiative Fluorescence Resonance Energy Transfer,” Proc. Natl. Acad. Sci. USA 85:8790-8794 (1988). |
Clegg, “Fluorescence Resonance Energy Transfer and Nucleic Acids,” Methods of Enzymology 211:353-389 (1992). |
Clegg et al., “Observing the Helical Geometry of Double-Stranded DNA in Solution by Fluorescence Resonance Energy Transfer,” Proc. Natl. Acad. Sci. USA 90:2994-2998 (1993). |
Guo et al., “Direct Fluores. Analy. of Genetic Polymor. by Hybrid. with oligonucl. arrays on glass supports,” Nucl. Acids Res., 22(24) :5456-5465 (1994). |
Heller et al., “Fluorescent Energy Transfer Oligonucleotide Probes,” Abstract 248, Fed. Proc. 46:1968 (1987). |
Higuchi et al., “Simultaneous Amplification and Detection of Specific DNA Sequences,” Biotechnology 10:413-417 (1992). |
Higuchi et al., “Kinetic PCR Analysis: Real-Time Monitoring of DNA Amplification Reactions,” Biotechnology 11:1026-1030 (1993). |
Holland et al., “Detection of Specific Polymerase Chain Reaction Product by Utilizing the 5′-3′ Exonuclease Activity of Thermus aquaticus DNA Polymerase,” Proc. Natl. Acad. Sci. USA 88:7276-7280 (1991). |
Ju et al., “Design and Synthesis of Fluorescence Energy Transfer Dye-Labeled Primers and their Application for DNA Sequencing and Analysis,” Anal. Biochem. 231:131-140 (1995). |
Lee et al., “DNA sequencing with dye-labeled terminators and T7 DNA polymerase: effect of dyes and dNTPs on incorporation of dye-terminators and probability analysis of termination fragments,” Nucl. Acids Res. 20(10):2471-2483 (1992). |
Lindsey et al., “Visible light-harvesting in covalently-linked porphyrin-cyanine dyes,” Tetrahedron 45(15) :4845-4866 (1989). |
Mergny et al., “Fluorescent Energy Transfer as a Probe for Nucleic Acid Structures and Sequences,” Nucl. Acids Res. 22(6) :920-928 (1994). |
Ozaki et al., “The estimation of distances between specific backbone-labeled sites in DNA using fluorescence resonance energy transfer,” Nucl. Acids Res. 20(19):5205-5214 (1992). |
Parkhurst et al., “Kinetic Studies by fluorescence resonance energy transfer employing a double-labeled oligonucleotide: hybridization to the oligonucleotide complement and to single-stranded DNA,” Biochemistry 34:285-292 (1995). |
Parkhurst & Parkhurst, “Donor-Acceptor Distance Distributions in a Double-Labeled Fluorescent Oligonucleotide Both as a Single Strand and in Duplexes,” Biochemistry 34:293-300 (1995). |
Parkhurst & Parkhurst, “Changes in the end-to-end distance distribution in an oligonucleotide following hybridization,” Time-Resolved Laser Spectroscopy in Biochemistry (Ladowicz, J.R. Ed.), Proc SPIE 2137:475-485 (1994). |
Parkhurst & Parkhurst, “Kinetic Studies of Oligonucleotide-DNA Hybridization in Solution by Fluorescence Resonance Energy Transfer,” Abstr. Biophys. J. 64:A266 (1993). |
Parkhurst & Parkhurst, “Fluorescence Studies of Oligonucleotide-DNA Hybridization in Solution and of Oligonucleotide End to End Distance Distributions,” Abstracts, 11th International Congress on Photobiology, Kyoto, Japan, p. 258, Photobiology Association of Japan, Kyoto, Japan (1992). |
Stryer et al., “Energy Transfer: A Spectroscopic Ruler,” Proc. Natl. Acad. Sci. USA 58:719-726 (1967). |
Tyagi et al., Molecular Beacons: Probes that fluoresce upon hybridization, Nature Biotechnology 14:303-308 (1996). |
Wu et al., “Resonance Energy Transfer: Methods and Applications,” Anal. Biochem. 218:1-13 (1994). |