Two-dimensional structure of plant light-harvesting complex at 37 Å resolution by electron crystallography☆
暂无分享,去创建一个
[1] B. Jap. Molecular design of PhoE porin and its functional consequences. , 1989, Journal of molecular biology.
[2] W. Kühlbrandt,et al. Structure of light-harvesting chlorophyll a/b protein complex from plant photosynthetic membranes at 7 A resolution in projection. , 1988, Journal of molecular biology.
[3] R. Henderson,et al. Images of purple membrane at 2.8 A resolution obtained by cryo-electron microscopy. , 1988, Journal of molecular biology.
[4] P. N. Unwin,et al. Two-dimensional structure of the light-harvesting chlorophyll a/b complex by cryoelectron microscopy , 1988, The Journal of cell biology.
[5] A. Becker,et al. Chlorophyll dichroism of three‐dimensional crystals of the light‐harvesting chlorophyll a/b‐protein complex , 1988 .
[6] D. Klug,et al. The state of detergent solubilised light-harvesting chlorophyll-a/b protein complex as monitored by picosecond time-resolved fluorescence and circular dichroism , 1987 .
[7] W. Kühlbrandt. Three-dimensional crystals of the light-harvesting chlorophyll a/b protein complex from pea chloroplasts. , 1987, Journal of molecular biology.
[8] D. Siefermann-Harms. Carotenoids in photosynthesis. I: Location in photosynthetic membranes and light-harvesting function , 1985 .
[9] J. Breton,et al. Transmembrane orientation of α-helices in the thylakoid membrane and in the light-harvesting complex. A polarized infrared spectroscopy study , 1984 .
[10] W. Kühlbrandt. Three-dimensional structure of the light-harvesting chlorophyll a/b–protein complex , 1984, Nature.
[11] W. Kühlbrandt,et al. The structure of membrane crystals of the light-harvesting chlorophyll a/b protein complex , 1983, The Journal of cell biology.
[12] G. Coruzzi,et al. Nucleotide sequences of two pea cDNA clones encoding the small subunit of ribulose 1,5-bisphosphate carboxylase and the major chlorophyll a/b-binding thylakoid polypeptide. , 1983, The Journal of biological chemistry.
[13] S. Edelstein,et al. Equivalence of the projected structure of thin catalase crystals preserved for electron microscopy by negative stain, glucose or embedding in the presence of tannic acid. , 1983, Journal of molecular biology.
[14] R. Henderson,et al. Three-dimensional model of purple membrane obtained by electron microscopy , 1975, Nature.
[15] J. Thornber. Chlorophyll-Proteins: Light-Harvesting and Reaction Center Components of Plants , 1975 .
[16] K. Downing,et al. Observations of restricted beam-induced specimen motion with small-spot illumination. , 1988, Ultramicroscopy.
[17] Richard Henderson,et al. Use of spot-scan procedure for recording low-dose micrographs of beam-sensitive specimens , 1987 .
[18] J. Lepault,et al. Structure of purple membrane from halobacterium halobium: recording, measurement and evaluation of electron micrographs at 3.5 Å resolution , 1986 .
[19] K. Downing,et al. Improvement in high resolution image quality of radiation-sensitive specimens achieved with reduced spot size of the electron beam. , 1986, Ultramicroscopy.
[20] R. Henderson,et al. Quantitative analysis of image contrast in electron micrographs of beam-sensitive crystals , 1985 .
[21] R. Henderson,et al. Measurement and evaluation of electron diffraction patterns from two-dimensional crystals , 1984 .