Optical properties of chromophore‐macromolecule complexes: Absorption and fluorescence of acridine dyes bound to polyphosphates and DNA
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- Type
- article
- Published
- 1963-08-01
- Cited by
- 194
- References
- 17
- Access
- Open access
- OpenAlex
- https://openalex.org/W303419190
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:84981370
Keywords
Chromophore, DNA, Fluorescence, Absorption (acoustics), Macromolecule
References
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- Microdetermination of Phosphorus
- Correction of fluorescence spectra and measurement of fluorescence quantum efficiency
- Enumeration of Components in Complex Systems by Fluorescence Spectrophotometry
- Interaction of DNA and proflavine: a small-angle x-ray scattering study.
- AGGREGATION OF DYES BOUND TO POLYANIONS.
- Fluorescence excitation spectrum of organic compounds in solution. Part 1.—Systems with quantum yield independent of the exciting wavelength
- COMPETITIVE BINDING OF ATP AND ACRIDINE ORANGE BY MUSCLE.
- The structure of the DNA-acridine complex.
- Fluorescence quenching by nucleic acids
- Absorption and Rotation of Light by Helical Polymers: The Effect of Chain Length
- Structural considerations in the interaction of DNA and acridines.
- Determination of the absolute quantum yield of fluorescent solutions
- The interaction of deoxyribonucleic acid and acridine orange.
- Optical Rotatory Dispersion of Dyes Bound to Macromolecules. Cationic Dyes: Polyglutamic Acid Complexes2,3
- I. Die Tieftemperaturspektren einiger homologer sechsgliedriger N-Heterocyclen und ihre Entwicklung zu den Spektren der Acridinfarbstoffe.
- Photoreduction of Acridine Dyes1,2
Cited by
- Studies on the structure and optical behavior of the acridine orange complex with poly-[alpha], L-glutamic acid
- Quantum-mechanical investigations of the electronic structure of nucleic acids and their constituents.
- Interactions of acridine orange with nucleic acids. Properties of complexes of acridine orange with single stranded ribonucleic acid.
- Interaction between hydroxystilbamidine and DNA. II. Temperature jump relaxation study. Dynamics of nucleic acids and polynucleotides.
- Sequence, Structure and Energy Transfer in DNA †
- Interaction between hydroxystilbamidine and DNA. I. Binding isotherms and thermodynamics of the association.
- Acridine orange-sensitized photoinactivation of T4 bacteriophage. I. Parameters affecting phage sensitivity to visible light.
- Electro-optical properties of nucleic acids and nucleoproteins. V. Study of sonicated DNA and nucleohistone solutions.
- A fluorescent complex between ethidium bromide and nucleic acids. Physical-chemical characterization.
- The binding of proflavine to transfer ribonucleic acid: dependence on secondary structure.
- Structural studies on ribosomes. I. The binding of proflavine to Escherichia coli ribosomes.
- Altered Sporulation and Respiratory Patterns in Mutants of Bacillus subtilis Induced by Acridine Orange
- Excited states of nucleotides and singlet energy transfer in polynucleotides.
- Interactions of the dimethyldiazaperopyrenium dication with nucleic acids. 2. Binding to double-stranded polynucleotides.
- Mechanistic differences in the energy-linked fluorescence decreases of 9-aminoacridine dyes associated with bovine heart submitochondrial membranes.
- Sequence dependence of energy transfer in DNA oligonucleotides.
- A sensitive fluorometric procedure for the determination of small quantities of acetylcholinesterase.
- Rendement quantique, temps de vie de fluorescence et heterogeneité des sites de fixation de la proflavine sur le DNA
- Characterization of the binding of YO to [poly(dA‐dT)]2 and [poly(dG‐dC)]2, and of the fluorescent properties of YO and YOYO complexed with the polynucleotides and double‐stranded DNA
- Physico-chemical investigation of the mode of binding of the alkaloids 5,6-dihydroflavopereirine and sempervirine with DNA.