Stability of allophycocyanin's quaternary structure.
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Summary
The dissociation of allophycocyanin trimers to monomers was examined under a variety of conditions and was consistent with hydrophobic forces being the dominant source of trimer stabilization.
- Type
- article
- Published
- 1983-05-01
- Cited by
- 23
- References
- 41
- OpenAlex
- https://openalex.org/W1975862409
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31208818
Keywords
Chemistry, Trimer, Monomer, Dissociation (chemistry), Alkyl
References
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- Dimerization of alpha-chymotrypsin. II. Ionic strength and temperature dependence.
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- Chromophore interactions in allophycocyanin.
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- Light scattering studies of the quaternary structure and subunit dissociation of proteins: The use of hydrophobic solutes and salts as probes
- Automated acquisition and analysis of data from the photoelectric scanner of the model E analytical ultracentrifuge.
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- Biliproteins: Some Relationships Among Aggregation States, Spectra, and Excitation-Energy Transfer
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- Noncovalent Intermolecular Forces in Phycobilisomes of Porphyridium cruentum.
- Thermodynamic studies of protein-small molecule interaction. 3. Solute-solute hydrophobic interaction of phycocyanin with alcohols
- Polymerization-depolymerization of tobacco mosaic virus protein. XI. Osmotic pressure studies of solutions in water and in deuterium.
- Thermodynamic studies of protein-salt interaction. Phycocyanin-tetrabutylammonium bromide and -tetraethylammonium bromide
Cited by
- Studies on the Dissociation of Cryptomonad Biliproteins (*)
- Crystal structure analysis and refinement at 2.5 A of hexameric C-phycocyanin from the cyanobacterium Agmenellum quadruplicatum. The molecular model and its implications for light-harvesting.
- High-performance liquid chromatography coupled on-line with electrospray ionization mass spectrometry for the simultaneous separation and identification of the Synechocystis PCC 6803 phycobilisome proteins.
- Studies on C-phycocyanin from Cyanidium caldarium, a eukaryote at the extremes of habitat.
- Allophycocyanin trimer stability and functionality are primarily due to polar enhanced hydrophobicity of the phycocyanobilin binding pocket.
- THE DEVELOPMENT OF EXCITON MIGRATION ROUTES FOR PHYCOCYANIN 645 AND ALLOPHYCOCYANIN
- L'antenne collectrice d'énergie lumineuse à phycobiliprotéines chez les cyanobactéries
- Allophycocyanin: trimers, monomers, subunits, and homodimers.
- Spectroscopic studies on phycoerythrin 545, its bilins, and its isoproteins
- STRUCTURE AND FUNCTION OF LIGHT‐HARVESTING COMPLEXES AND THEIR POLYPEPTIDES
- Crystal Structure of Allophycocyanin from Red AlgaePorphyra yezoensis at 2.2-Å Resolution*
- Separation and quantitation of phycobiliproteins using phytic acid in capillary electrophoresis with laser-induced fluorescence detection.
- RECONSTITUTION OF ALLOPHYCOCYANIN FROM Mastigocladus laminosus WITH ISOLATED LINKER POLYPEPTIDE
- Phycocyanin 612: a biochemical and photophysical study
- Three‐dimensional architecture of phycobilisomes from Nostoc flagelliforme revealed by single particle electron microscopy
- PICOSECOND FLUORESCENCE FROM PHYCOCYANIN 612
- Determination of phycobiliproteins by capillary electrophoresis with laser‐induced fluorescence detection
- Allophycocyanin and energy transfer.
- Chlorophyll a interference in phycocyanin and allophycocyanin spectrophotometric quantification
- Biosynthesis and characterization of a recombinant eukaryotic allophycocyanin using prokaryotic accessory enzymes
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