TY - JOUR
T1 - Isolation and characterization of a Photosystem II complex from the red alga Cyanidium caldarium
T2 - association of cytochrome c-550 and a 12 kDa protein with the complex
AU - Enami, Isao
AU - Murayama, Hiroshi
AU - Ohta, Hisataka
AU - Kamo, Masaharu
AU - Nakazato, Katsuyoshi
AU - Shen, Jian Ren
N1 - Funding Information:
We would like to thank Dr. Y. Inoue of The Institute of Physical and Chemical Research (RIKEN) for his critical reading of the manuscript. We also thank Drs. T. Horio and T. Kakuno of Osaka Univesity for providing the antibodies against spinach CP47, CP43, 33, 23 and 17 kDa proteins, Dr. M. Ikeuchi of University of Tokyo for providing the antibodies against spinach Dl, D2 and the (Y subunit of cyt b-559. This work was supported in part by a grant-in-aid for Co-operative Research (No. 05304006) from the Ministry of Education, Science and Culture of Japan.
PY - 1995/12/12
Y1 - 1995/12/12
N2 - A Photosystem II (PS II) complex was purified from an acidophilic as well as a thermophilic red alga, Cyanidium caldarium. The purified PS II complex was essentially devoid of phycobiliproteins and other contaminating components, and showed a high oxygen-evolving activity of 2375 μmol O2/mg Chl per h using phenyl-p-benzoquinone as the electron acceptor. The expression of this high activity did not require addition of exogenous Ca2+, although EDTA reduced the activity by 40%. This effect of EDTA can be reversed not only by Ca2+ but also by Mg2+; a similar Mg2+ effect has been observed in purified cyanobacterial PS II but not in higher plant PS II. Immunoblotting analysis indicated the presence of major intrinsic polypeptides commonly found in PS II from cyanobacteria and higher plants as well as the extrinsic 33 kDa protein. Antibodies against the extrinsic 23 and 17 kDa proteins of higher plant PS II, however, did not crossreact with any polypeptides in the purified PS II, indicating the absence of these proteins in the red alga. In contrast, two other extrinsic proteins of 17 and 12 kDa were present in the red algal PS II; they were released by 1 M Tris or Urea/NaCl treatment but not by 1 M NaCl. The 17 kDa polypeptide was identified to be cytochrome c-550 from heme-staining, immunoblot analysis and N-terminal amino acid sequencing, and the 12 kDa protein was found to be homologous to the 12 kDa extrinsic protein of cyanobacterial PS II from its N-terminal sequence. These results indicate that PS II from the red alga is closely related to PS II from cyanobacteria rather than to that from higher plants, and that the replacement of PS II extrinsic cytochrome c-550 and the 12 kDa protein by the extrinsic 23 and 17 kDa proteins occurred during evolution from red algae to green algae and higher plants.
AB - A Photosystem II (PS II) complex was purified from an acidophilic as well as a thermophilic red alga, Cyanidium caldarium. The purified PS II complex was essentially devoid of phycobiliproteins and other contaminating components, and showed a high oxygen-evolving activity of 2375 μmol O2/mg Chl per h using phenyl-p-benzoquinone as the electron acceptor. The expression of this high activity did not require addition of exogenous Ca2+, although EDTA reduced the activity by 40%. This effect of EDTA can be reversed not only by Ca2+ but also by Mg2+; a similar Mg2+ effect has been observed in purified cyanobacterial PS II but not in higher plant PS II. Immunoblotting analysis indicated the presence of major intrinsic polypeptides commonly found in PS II from cyanobacteria and higher plants as well as the extrinsic 33 kDa protein. Antibodies against the extrinsic 23 and 17 kDa proteins of higher plant PS II, however, did not crossreact with any polypeptides in the purified PS II, indicating the absence of these proteins in the red alga. In contrast, two other extrinsic proteins of 17 and 12 kDa were present in the red algal PS II; they were released by 1 M Tris or Urea/NaCl treatment but not by 1 M NaCl. The 17 kDa polypeptide was identified to be cytochrome c-550 from heme-staining, immunoblot analysis and N-terminal amino acid sequencing, and the 12 kDa protein was found to be homologous to the 12 kDa extrinsic protein of cyanobacterial PS II from its N-terminal sequence. These results indicate that PS II from the red alga is closely related to PS II from cyanobacteria rather than to that from higher plants, and that the replacement of PS II extrinsic cytochrome c-550 and the 12 kDa protein by the extrinsic 23 and 17 kDa proteins occurred during evolution from red algae to green algae and higher plants.
KW - (Red algae)
KW - Cytochrome c-550
KW - Extrinsic protein
KW - Oxygen evolution
KW - Photosystem II
KW - Protein, 12 kDa
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U2 - 10.1016/0005-2728(95)00122-0
DO - 10.1016/0005-2728(95)00122-0
M3 - Article
C2 - 8534673
AN - SCOPUS:0028829367
SN - 0005-2728
VL - 1232
SP - 208
EP - 216
JO - BBA - Bioenergetics
JF - BBA - Bioenergetics
IS - 3
ER -