Isolation and characterization of a PSI–LHCI super-complex and its sub-complexes from a siphonaceous marine green alga, Bryopsis Corticulans
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Jian-Ren Shen | T. Kuang | Jianping Zhang | Lijing Chang | X. Qin | Wenda Wang | Peng Wang | Jing-Hua Chen | Yi-kun He
[1] Jian-Ren Shen,et al. Spectral and functional studies on siphonaxanthin-type light-harvesting complex of photosystem II from Bryopsis corticulans , 2013, Photosynthesis Research.
[2] A. Murakami,et al. Opposite chirality of α-carotene in unusual cyanobacteria with unique chlorophylls, Acaryochloris and Prochlorococcus. , 2012, Plant & cell physiology.
[3] E. Boekema,et al. Photosystem I of Chlamydomonas reinhardtii Contains Nine Light-harvesting Complexes (Lhca) Located on One Side of the Core* , 2011, The Journal of Biological Chemistry.
[4] A. Busch,et al. The structure and function of eukaryotic photosystem I. , 2011, Biochimica et biophysica acta.
[5] H. Frank,et al. Molecular factors controlling photosynthetic light harvesting by carotenoids. , 2010, Accounts of chemical research.
[6] Daniel J. Sandberg,et al. The charge-transfer properties of the S2 state of fucoxanthin in solution and in fucoxanthin chlorophyll-a/c2 protein (FCP) based on stark spectroscopy and molecular-orbital theory. , 2008, The journal of physical chemistry. B.
[7] N. Nelson,et al. A Glimpse into the Atomic Structure of Plant Photosystem I , 2008 .
[8] P. Fromme. Photosynthetic Protein Complexes: A Structural Approach , 2008 .
[9] M. Mimuro,et al. Characterization of Highly Purified Photosystem I Complexes from the Chlorophyll d-dominated Cyanobacterium Acaryochloris marina MBIC 11017* , 2008, Journal of Biological Chemistry.
[10] L. Bumba,et al. Organisation of Photosystem I and Photosystem II in red alga Cyanidium caldarium: encounter of cyanobacterial and higher plant concepts. , 2007, Biochimica et biophysica acta.
[11] Nathan Nelson,et al. The structure of a plant photosystem I supercomplex at 3.4 Å resolution , 2007, Nature.
[12] T. Kuang,et al. Rapid purification of photosystem I chlorophyll-binding proteins by differential centrifugation and vertical rotor , 2007, Photosynthesis Research.
[13] V. Sundström,et al. Energy transfer in the major intrinsic light-harvesting complex from Amphidinium carterae. , 2006, Biochemistry.
[14] A. Ben-Shem,et al. The structure of photosystem I and evolution of photosynthesis , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.
[15] J. Barber,et al. Light‐harvesting complex II protein CP29 binds to photosystem I of Chlamydomonas reinhardtii under State 2 conditions , 2005, The FEBS journal.
[16] R. Hiller,et al. The charge-transfer character of the S0 --> S2 transition in the carotenoid peridinin is revealed by Stark spectroscopy. , 2005, The journal of physical chemistry. B.
[17] W. Kühlbrandt,et al. Mechanisms of photoprotection and nonphotochemical quenching in pea light‐harvesting complex at 2.5 Å resolution , 2005, The EMBO journal.
[18] S. D’haene,et al. Supramolecular organization and dual function of the IsiA chlorophyll-binding protein in cyanobacteria. , 2004, Biochemistry.
[19] E. Stauber,et al. Comparison of the subunit compositions of the PSI-LHCI supercomplex and the LHCI in the green alga Chlamydomonas reinhardtii. , 2004, Biochemistry.
[20] J. Barber,et al. Energy Coupling in the PSI−LHCI Supercomplex from the Green Alga Chlamydomonas reinhardtii†,‖ , 2004 .
[21] Tomáš Polívka,et al. Effect of a conjugated carbonyl group on the photophysical properties of carotenoids , 2004 .
[22] Yanli Wang,et al. Insight into the structural role of carotenoids in the photosystem I: a quantum chemical analysis. , 2004, Biophysical journal.
[23] Zhenfeng Liu,et al. Crystal structure of spinach major light-harvesting complex at 2.72 Å resolution , 2004, Nature.
[24] V. Sundström,et al. Ultrafast dynamics of carotenoid excited States-from solution to natural and artificial systems. , 2004, Chemical reviews.
[25] Nathan Nelson,et al. Crystal structure of plant photosystem I , 2003, Nature.
[26] E. Stauber,et al. Proteomics of Chlamydomonas reinhardtii Light-Harvesting Proteins , 2003, Eukaryotic Cell.
[27] T. Maoka,et al. PHOTOSYNTHETIC PIGMENT COMPOSITION IN THE PRIMITIVE GREEN ALGA MESOSTIGMA VIRIDE (PRASINOPHYCEAE): PHYLOGENETIC AND EVOLUTIONARY IMPLICATIONS 1 , 2003 .
[28] J. Kennis,et al. beta-carotene to chlorophyll singlet energy transfer in the photosystem I core of Synechococcus elongatus proceeds via the beta-carotene S-2 and S-1 states , 2003 .
[29] J. Barber,et al. Three-dimensional Reconstruction of a Light-harvesting Complex I- Photosystem I (LHCI-PSI) Supercomplex from the Green Alga Chlamydomonas reinhardtii , 2003, The Journal of Biological Chemistry.
[30] M. Wiener,et al. Pigment Binding of Photosystem I Light-harvesting Proteins* , 2002, The Journal of Biological Chemistry.
[31] E. Boekema,et al. Supramolecular organization of photosystem I and light‐harvesting complex I in Chlamydomonas reinhardtii , 2002, FEBS letters.
[32] R. van Grondelle,et al. Energy transfer and trapping in photosystem I. , 2001, Biochimica et biophysica acta.
[33] H. Scheller,et al. Role of subunits in eukaryotic Photosystem I. , 2001, Biochimica et biophysica acta.
[34] E. Boekema,et al. A giant chlorophyll–protein complex induced by iron deficiency in cyanobacteria , 2001, Nature.
[35] J. Barber,et al. Iron deficiency induces the formation of an antenna ring around trimeric photosystem I in cyanobacteria , 2001, Nature.
[36] Petra Fromme,et al. Three-dimensional structure of cyanobacterial photosystem I at 2.5 Å resolution , 2001, Nature.
[37] A. D. Martino,et al. The light-harvesting antenna of brown algae , 2000 .
[38] T. Inaba,et al. Mechanism of the Carotenoid-to-Bacteriochlorophyll Energy Transfer via the S1 State in the LH2 Complexes from Purple Bacteria , 2000 .
[39] F. Garlaschi,et al. A thermal broadening study of the antenna chlorophylls in PSI-200, LHCI, and PSI core. , 1998, Biochemistry.
[40] Q. Hu,et al. A photosystem I reaction center driven by chlorophyll d in oxygenic photosynthesis. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[41] M. Mimuro,et al. Distribution and Geometric Isomerism of Neoxanthin in Oxygenic Phototrophs: 9′-Cis, a Sole Molecular Form , 1998 .
[42] F. Partensky,et al. Isolation and characterization of Photosystem I from two strains of the marine oxychlorobacterium Prochlorococcus , 1998, Photosynthesis Research.
[43] H. Scheller,et al. Nearest-Neighbor Analysis of Higher-Plant Photosystem I Holocomplex , 1996, Plant physiology.
[44] Hideaki Miyashita,et al. Chlorophyll d as a major pigment , 1996, Nature.
[45] T. Gillbro,et al. Ultrafast energy transfer dynamics resolved in isolated spinach light-harvesting complex I and the LHC I-730 subpopulation , 1995 .
[46] G. M. Smith,et al. Manual of Phycology , 1994 .
[47] V. Sundström,et al. Energy transfer and trapping in photosynthesis , 1994 .
[48] H. Schägger,et al. Analysis of molecular masses and oligomeric states of protein complexes by blue native electrophoresis and isolation of membrane protein complexes by two-dimensional native electrophoresis. , 1994, Analytical biochemistry.
[49] S. Jansson. The light-harvesting chlorophyll a/b-binding proteins. , 1994, Biochimica et biophysica acta.
[50] R. Horgan,et al. Abscisic acid biosynthesis in roots , 1992, Planta.
[51] O. Björkman,et al. Leaf Xanthophyll content and composition in sun and shade determined by HPLC , 1990, Photosynthesis Research.
[52] M. Ikeuchi,et al. A New 4.8-kDa Polypeptide Intrinsic to the PS II Reaction Center, as Revealed by Modified SDS-PAGE with Improved Resolution of Low-Molecular-Weight Proteins , 1988 .
[53] Sallie W. Chisholm,et al. A novel free-living prochlorophyte abundant in the oceanic euphotic zone , 1988, Nature.
[54] D. Siefermann-Harms,et al. The light-harvesting and protective functions of carotenoids in photosynthetic membranes , 1987 .
[55] Jan M. Anderson. Chlorophyll-protein complexes of a marine green alga, Codium species (Siphonales) , 1985 .
[56] J. Argyroudi-Akoyunoglou,et al. The origin of the long-wavelength fluorescence emission band (77°K) from photosystem I , 1984 .
[57] E. Lam,et al. Chlorophyll a/b proteins of Photosystem I , 1984 .
[58] A. Cobb,et al. THE SEPARATION, IDENTIFICATION AND QUANTITATIVE DETERMINATION OF PHOTOPIGMENTS FROM THE SIPHONACEOUS MARINE ALGA CODIUM FRAGILE , 1981 .
[59] R. Cogdell. Carotenoids in photosynthesis , 1978, Photochemistry and photobiology.
[60] S. W. Thorne,et al. Chlorophyll—protein complexes of spinach and barley thylakoids , 1978 .
[61] C. Foote,et al. Chemistry of singlet oxygen. X. Carotenoid quenching parallels biological protection. , 1970, Journal of the American Chemical Society.
[62] J. Wintermans,et al. Spectrophotometric characteristics of chlorophylls a and b and their phenophytins in ethanol , 1965 .
[63] D. Chapman,et al. IDENTITY OF ε-CAROTENE AND ε1-CAROTENE, , 1963 .
[64] G. Cohen-bazire,et al. Function of Carotenoids in Photosynthesis , 1955, Nature.
[65] W. M. Manning,et al. A Unique Polyene Pigment of the Marine Diatom Navicula Torquatum , 1943 .
[66] R. Cogdell,et al. Carotenoids and bacterial photosynthesis: The story so far... , 2004, Photosynthesis Research.
[67] F. Frolow,et al. Light-Harvesting Features Revealed by the Structure of Plant Photosystem I , 2004, Photosynthesis Research.
[68] R. Hiller,et al. Light-Harvesting Systems in Chlorophyll c-Containing Algae , 2003 .
[69] P. Fromme,et al. Structure and Function of the Antenna System in Photosystem I , 2003 .
[70] William W. Parson,et al. Light-Harvesting Antennas in Photosynthesis , 2003, Advances in Photosynthesis and Respiration.
[71] B. Pineau,et al. Carotenoid binding to photosystems I and IIof Chlamydomonas reinhardtii cells grown under weak light or exposed to intense light , 2001 .
[72] K. Apt,et al. The light-harvesting antenna of brown algae: highly homologous proteins encoded by a multigene family. , 2000, European journal of biochemistry.
[73] D. Rodriguez-Amaya. A Guide to Carotenoid Analysis in Foods , 1999 .
[74] H. Frank,et al. The photochemistry and function of carotenoids in photosynthesis , 1993 .
[75] S. Takaichi,et al. Characterization of carotenoids in photosynthetic bacteria. , 1992 .
[76] G. Britton,et al. The distribution of α-carotene in the photosynthetic pigment-protein complexes of higher plants , 1989 .
[77] T. Goodwin. Chemistry and biochemistry of plant pigments , 1976 .
[78] T. Ricketts. The structures of siphonein and siphonaxanthin from Codium fragile , 1971 .
[79] C. Foote,et al. Chemistry of singlet oxygen. , 1968 .
[80] D. Arnon. COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN BETA VULGARIS. , 1949, Plant physiology.
[81] C. A. Shull,et al. THOMAS ANDREW KNIGHT IN MEMORIAM , 1939 .