[49] Low-temperature spectrophotometry of intermediates of rhodopsin

[1]  R. Hara,et al.  PHOTOCHEMISTRY OF RETINOCHROME , 1981, Photochemistry and photobiology.

[2]  T. Yoshizawa,et al.  PHOTOCHEMICAL REACTION OF 13‐CIS‐BACTERIORHODOPSIN STUDIED BY LOW TEMPERATURE SPECTROPHOTOMETRY , 1981 .

[3]  T. Yoshizawa,et al.  Photochemical reactions of 13-demethyl visual pigment analogues at low temperatures. , 1981, Biochemistry.

[4]  T. Yoshizawa,et al.  ORIENTATION OF RETINYLIDENE CHROMOPHORE OF HYPSORHODOPSIN IN FROG RETINA , 1980, Photochemistry and photobiology.

[5]  T. Yoshizawa,et al.  THE FORMATION OF TWO FORMS OF BATHORHODOPSIN AND THEIR OPTICAL PROPERTIES , 1980, Photochemistry and photobiology.

[6]  A. Sarai,et al.  SIMULATION ANALYSIS OF THE PHOTOCONVERSION PROCESS OF SQUID RHODOPSIN AT LIQUID HELIUM TEMPERATURE , 1980 .

[7]  T. Yoshizawa,et al.  Circular dichroism of cattle rhodopsin and bathorhodopsin at liquid nitrogen temperatures. , 1980, Biochimica et biophysica acta.

[8]  T. Yoshizawa,et al.  Existence of two forms of bathorhodopsins , 1980, FEBS letters.

[9]  T. Yoshizawa,et al.  Photochemical studies of 7-cis-rhodopsin at low temperatures. Nature and properties of the bathointermediate. , 1980, Biochemistry.

[10]  T. Yoshizawa,et al.  QUANTUM EFFICIENCY FOR THE PHOTOCONVERSION OF BACTERIORHODOPSIN AT VERY LOW TEMPERATURES , 1980 .

[11]  A. Sarai,et al.  Orientational changes of the transition dipole moment of retinal chromophore on the disk membrane due to the conversion of rhodopsin to bathorhodopsin and to isorhodopsin , 1979, Vision Research.

[12]  Takayoshi Kobayashi,et al.  Hypsorhodopsin: the first intermediate of the photochemical process in vision , 1979, FEBS letters.

[13]  T. Yoshizawa,et al.  Photochemical reaction of 9-cis-retro-γ-rhodopsin at low temperatures , 1979 .

[14]  T. Yoshizawa,et al.  Photoreaction of trans‐bacteriorhodopsin at liquid helium temperature , 1979, FEBS letters.

[15]  T. Yoshizawa,et al.  Formation of 7-cis- and 13-cis-retinal pigments by irradiating squid rhodopsin. , 1979, Biochemistry.

[16]  S. Wakabayashi,et al.  Isorhodopsin: Conformation and orientation of its chromophore in frog disk membrane , 1978, Vision Research.

[17]  T. Yoshizawa,et al.  Circular dichroism of squid rhodopsin and its intermediates. , 1978, Biochimica et biophysica acta.

[18]  T. Yoshizawa,et al.  Formation of hypsorhodopsin in frog retina , 1978 .

[19]  T. Yoshizawa,et al.  Formation of a 7‐cis retinal pigment by irradiating cattle rhodopsin at low temperatures , 1978 .

[20]  T. Yoshizawa,et al.  Retro-γ-retinals and Visual Pigment Analogues , 1978 .

[21]  Takayoshi Kobayashi,et al.  PICOSECOND LASER PHOTOLYSIS OF SQUID RHODOPSIN AT ROOM AND LOW TEMPERATURES , 1978 .

[22]  T. Yoshizawa,et al.  Absorption spectra of rhodopsin and its intermediates and orientational change of the chromophore , 1977, Vision Research.

[23]  T. Yoshizawa,et al.  Isochromic forms of rhodopsin: isolation and photochemical properties. , 1977, Biochemistry.

[24]  Takayoshi Kobayashi,et al.  Squid hypsorhodopsin and bathorhodopsin by a picosecond laser photolysis , 1977, FEBS letters.

[25]  S. E. Ostroy Rhodopsin and the visual process. , 1977, Biochimica et biophysica acta.

[26]  T. Yoshizawa,et al.  Analysis by spectral difference of the orientational change of the rhodopsin chromophore during bleaching , 1976, Vision Research.

[27]  T. Yoshizawa,et al.  Photochemical reaction of bacteriorhodopsin , 1976, FEBS letters.

[28]  J. Mulder,et al.  A NEW FACET IN RHODOPSIN PHOTOCHEMISTRY , 1976, Photochemistry and photobiology.

[29]  T. Yoshizawa,et al.  A new intermediate between lumirhodopsin and metarhodopsin in squid , 1975, FEBS letters.

[30]  Y. Tsukamoto,et al.  Photic reactions of chicken iodopsin and rhodopsin at liquid helium temperature , 1975, Vision Research.

[31]  M. Sanders Handbook of Sensory Physiology , 1975 .

[32]  W. Dreyer,et al.  Rhodopsin content in the outer segment membranes of bovine and frog retinal rods. , 1974, Biochemistry.

[33]  T. Yoshizawa,et al.  The circular dichroism of rhodopsin and lumirhodopsin. , 1973, Experimental eye research.

[34]  T. Rosenfeld,et al.  Nanosecond Laser Photolysis of Rhodopsin in Solution , 1972, Nature.

[35]  R. Cone Rotational diffusion of rhodopsin in the visual receptor membrane. , 1972, Nature: New biology.

[36]  G. Wald,et al.  Photochemistry of Iodopsin , 1967, Nature.

[37]  G. Wald,et al.  Visual Pigments and the Keilin–Hartree Effect , 1966, Nature.

[38]  E. W. Abrahamson,et al.  Protein configuration changes in the photolysis of rhodopsin. II. The sequence of intermediates in thermal decay of cattle metarhodopsin in vitro. , 1966, Biochimica et biophysica acta.

[39]  G. Wald,et al.  Transformations of Squid Rhodopsin at Low Temperatures , 1964, Nature.

[40]  George Wald,et al.  Tautomeric Forms of Metarhodopsin , 1963, The Journal of general physiology.

[41]  G. Wald,et al.  Pre-Lumirhodopsin and the Bleaching of Visual Pigments , 1963, Nature.

[42]  K. Brown,et al.  Isolation and Identification of a Receptor Potential from the Pure Cone Fovea of the Monkey Retina , 1962, Nature.

[43]  M. Ishigami,et al.  On the labile intermediate of rhodopsin as demonstrated by low temperature illumination. , 1961, Biochimica et biophysica acta.

[44]  P. K. Brown,et al.  Action of Light on Visual Pigments , 1959, Nature.

[45]  G. Wald,et al.  CIS-TRANS ISOMERS OF VITAMIN A AND RETINENE IN THE RHODOPSIN SYSTEM , 1952, The Journal of general physiology.

[46]  Y. Ebina,et al.  An intermediate in the photolytic process of extracted squid rhodopsin. , 1975, The Japanese journal of physiology.

[47]  G. Wald The molecular basis of visual excitation. , 1968, Nature.