3 Phycobiliproteins in Microalgae: Occurrence …
61
cyanobacterium Fremyella diplosiphon and is encoded in the phycoerythrin linker- polypeptide
operon (cpeCDESTR). Molecular Microbiology, 44, 1517–1531.
Dailey, H. A., Dailey, T. A., Gerdes, S., Jahn, D., Jahn, M., O’Brian, M. R., & Warren, M. J. (2017).
Prokaryotic heme biosynthesis: Multiple pathways to a common essential product. Microbiology
and Molecular Biology Reviews, 8, e00048-e116.
Dailey, H. A., & Gerdes, S. (2015). HemQ: An iron-coproporphyrin oxidative decarboxylase for
protoheme synthesis in Firmicutes and Actinobacteria. Archives of Biochemistry and Biophysics,
574, 27–35.
Dailey, H. A., Gerdes, S., Dailey, T. A., Burch, J. S., & Phillips, J. D. (2015). Noncanonical
coproporphyrin-dependent bacterial heme biosynthesis pathway that does not use protoporphyrin.
Proceedings of the National academy of Sciences of the United States of America, 112, 2210–2215.
Dammeyer, T., Bagby, S. C., Sullivan, M. B., Chisholm, S. W., & Frankenberg-Dinkel, N. (2008).
Efficient phage-mediated pigment biosynthesis in oceanic cyanobacteria. Current Biology, 18,
442–448.
Dammeyer, T., & Frankenberg-Dinkel, N. (2008). Function and distribution of bilin biosynthesis
enzymes in photosynthetic organisms. Photochemical & Photobiological Sciences, 7, 1121–1131.
Datla, P. (2011). The wonder molecule called phycocyanin. In Parry Nutraceuticals. India: Division
of EID Parry (India) Ltd.
del Batlle, A. M., Benson, A., & Rimington, C. (1965). Purification and properties of coproporphyrinogenase. The Biochemical Journal, 97, 731–740.
Ducret, A., Sidler, W., Wehrli, E., Frank, G., & Zuber, H. (1996). Isolation, characterization and
electron microscopy analysis of a hemidiscoidal phycobilisome type from the cyanobacterium
Anabaena sp. PCC 7120. European Journal of Biochemistry, 236, 1010–1024.
Eriksen, N. T. (2008). Production of phycocyanin–a pigment with applications in biology,
biotechnology, foods and medicine. Applied Microbiology and Biotechnology, 80, 1–14.
Fairchild, C. D., & Glazer, A. N. (1994). Non-enzymatic bilin addition to the α subunit of an
apophycoerythrin. Journal of Biological Chemistry, 269, 28988–28996.
Fischer, W. W. (2008). Biogeochemistry: Life before the rise of oxygen. Nature, 455, 1051.
Frankenberg, N., Mukougawa, K., Kohchi, T., & Lagarias, J. C. (2001). Functional genomic analysis of the HY2 family of ferredoxin-dependent bilin reductases from oxygenic photosynthetic
organisms. The Plant Cell, 13, 965–972.
Frankenberg-Dinkel, N., & Terry, M. J. (2009). Synthesis and role of bilins in photosynthetic
organisms. In M. J. Warren & A. G. Smith (Eds.), Tetrapyrroles: Birth, life and death (pp. 208–
220). Austin, TX: Landes Bioscience.
Franklin, L. A., Krabs, G., & Kuhlenkamp, P. (2002). Blue light and UV radiation control the
synthesis of mycosporine like amino acids in Chondrus crispus (Florideophyceae). Journal of
Phycology, 37, 257–270.
Fujita, Y., Tsujimoto, R., & Aoki, R. (2015). Evolutionary aspects and regulation of tetrapyrrole
biosynthesis in cyanobacteria under aerobic and anaerobic environments. Life, 5, 1172–1203.
Galland-Irmouli, A. V., Pons, L., Lucon, M., Villaume, C., Mrabet, N. T., Gueant, J. L., & Fleurence,
J. (2000). One-step purification of R-phycoerythrin from the red macroalga Palmaria palmata
using preparative polyacrylamide gel electrophoresis. Journal of Chromatography B: Biomedical
Sciences and Applications, 739, 117–123.
Gantar, M., Simovi´ c, D., Djilas, S., Gonzalez, W. W., & Miksovska, J. (2012). Isolation, characterization and antioxidative activity of C-phycocyanin from Limnothrix sp. strain 37-2-1. Journal
of Biotechnology, 159, 21–26.
Gao, K., Yu, H., & Brown, M. T. (2007). Solar PAR and UV radiation affects the physiology and
morphology of the cyanobacterium Anabaena sp. PCC 7120. Journal of Photochemistry and
Photobiology B: Biology, 89, 117–124.
Gasper, R., Schwach, J., Hartmann, J., Holtkamp, A., Wiethaus, J., Riedel, N., et al. (2017). Distinct
features of cyanophage-encoded T-type phycobiliprotein lyase CpeT the role of auxiliary
metabolic genes. Journal of Biological Chemistry, 292, 3089–3098.
61
cyanobacterium Fremyella diplosiphon and is encoded in the phycoerythrin linker- polypeptide
operon (cpeCDESTR). Molecular Microbiology, 44, 1517–1531.
Dailey, H. A., Dailey, T. A., Gerdes, S., Jahn, D., Jahn, M., O’Brian, M. R., & Warren, M. J. (2017).
Prokaryotic heme biosynthesis: Multiple pathways to a common essential product. Microbiology
and Molecular Biology Reviews, 8, e00048-e116.
Dailey, H. A., & Gerdes, S. (2015). HemQ: An iron-coproporphyrin oxidative decarboxylase for
protoheme synthesis in Firmicutes and Actinobacteria. Archives of Biochemistry and Biophysics,
574, 27–35.
Dailey, H. A., Gerdes, S., Dailey, T. A., Burch, J. S., & Phillips, J. D. (2015). Noncanonical
coproporphyrin-dependent bacterial heme biosynthesis pathway that does not use protoporphyrin.
Proceedings of the National academy of Sciences of the United States of America, 112, 2210–2215.
Dammeyer, T., Bagby, S. C., Sullivan, M. B., Chisholm, S. W., & Frankenberg-Dinkel, N. (2008).
Efficient phage-mediated pigment biosynthesis in oceanic cyanobacteria. Current Biology, 18,
442–448.
Dammeyer, T., & Frankenberg-Dinkel, N. (2008). Function and distribution of bilin biosynthesis
enzymes in photosynthetic organisms. Photochemical & Photobiological Sciences, 7, 1121–1131.
Datla, P. (2011). The wonder molecule called phycocyanin. In Parry Nutraceuticals. India: Division
of EID Parry (India) Ltd.
del Batlle, A. M., Benson, A., & Rimington, C. (1965). Purification and properties of coproporphyrinogenase. The Biochemical Journal, 97, 731–740.
Ducret, A., Sidler, W., Wehrli, E., Frank, G., & Zuber, H. (1996). Isolation, characterization and
electron microscopy analysis of a hemidiscoidal phycobilisome type from the cyanobacterium
Anabaena sp. PCC 7120. European Journal of Biochemistry, 236, 1010–1024.
Eriksen, N. T. (2008). Production of phycocyanin–a pigment with applications in biology,
biotechnology, foods and medicine. Applied Microbiology and Biotechnology, 80, 1–14.
Fairchild, C. D., & Glazer, A. N. (1994). Non-enzymatic bilin addition to the α subunit of an
apophycoerythrin. Journal of Biological Chemistry, 269, 28988–28996.
Fischer, W. W. (2008). Biogeochemistry: Life before the rise of oxygen. Nature, 455, 1051.
Frankenberg, N., Mukougawa, K., Kohchi, T., & Lagarias, J. C. (2001). Functional genomic analysis of the HY2 family of ferredoxin-dependent bilin reductases from oxygenic photosynthetic
organisms. The Plant Cell, 13, 965–972.
Frankenberg-Dinkel, N., & Terry, M. J. (2009). Synthesis and role of bilins in photosynthetic
organisms. In M. J. Warren & A. G. Smith (Eds.), Tetrapyrroles: Birth, life and death (pp. 208–
220). Austin, TX: Landes Bioscience.
Franklin, L. A., Krabs, G., & Kuhlenkamp, P. (2002). Blue light and UV radiation control the
synthesis of mycosporine like amino acids in Chondrus crispus (Florideophyceae). Journal of
Phycology, 37, 257–270.
Fujita, Y., Tsujimoto, R., & Aoki, R. (2015). Evolutionary aspects and regulation of tetrapyrrole
biosynthesis in cyanobacteria under aerobic and anaerobic environments. Life, 5, 1172–1203.
Galland-Irmouli, A. V., Pons, L., Lucon, M., Villaume, C., Mrabet, N. T., Gueant, J. L., & Fleurence,
J. (2000). One-step purification of R-phycoerythrin from the red macroalga Palmaria palmata
using preparative polyacrylamide gel electrophoresis. Journal of Chromatography B: Biomedical
Sciences and Applications, 739, 117–123.
Gantar, M., Simovi´ c, D., Djilas, S., Gonzalez, W. W., & Miksovska, J. (2012). Isolation, characterization and antioxidative activity of C-phycocyanin from Limnothrix sp. strain 37-2-1. Journal
of Biotechnology, 159, 21–26.
Gao, K., Yu, H., & Brown, M. T. (2007). Solar PAR and UV radiation affects the physiology and
morphology of the cyanobacterium Anabaena sp. PCC 7120. Journal of Photochemistry and
Photobiology B: Biology, 89, 117–124.
Gasper, R., Schwach, J., Hartmann, J., Holtkamp, A., Wiethaus, J., Riedel, N., et al. (2017). Distinct
features of cyanophage-encoded T-type phycobiliprotein lyase CpeT the role of auxiliary
metabolic genes. Journal of Biological Chemistry, 292, 3089–3098.
