Photoreversible absorption change and domain structure of phytochrome
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Plant Science
Link
http://link.springer.com/content/pdf/10.1007/BF02491265.pdf
Reference103 articles.
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2. —,K.T. Yamamoto, A. Nagatani andM. Furuya. 1985. Characterization of green tissue-specific phytochrome isolated immunochemically from pea seedlings. Plant Cell Physiol.26: 1387–1399.
3. Aramendia, P.F., B.P. Ruzsicska, S.E. Braslavsky andK. Schaffner. 1987. Laser flash photolysis of 124-kilodalton oat phytochrome in H2O and D2O solutions: Formation and decay of the I700 intermediates. Biochemistry26: 1418–1422.
4. Arciero, D.M., D.A. Bryant andA.N. Glazer. 1988.In vitro attachment of bilins to apophycocyanin. I. Specific covalent adduct formation at cysteinyl residues involved in phycocyanobilin binding in C-phycocyanin. J. Biol. Chem.263: 18343–18349.
5. Baron, O. andB.L. Epel. 1983. Differences in the physical properties of native and partially degraded phytochrome as probed by their differential sensitivity to permanganate oxidation. Plant Physiol.73: 471–474.
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