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Titlebook: Biochemistry and Physiology of Visual Pigments; Symposium Held at In Helmut Langer Conference proceedings 1973 Springer-Verlag Berlin Heide

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期刊全称Biochemistry and Physiology of Visual Pigments
期刊简称Symposium Held at In
影响因子2023Helmut Langer
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图书封面Titlebook: Biochemistry and Physiology of Visual Pigments; Symposium Held at In Helmut Langer Conference proceedings 1973 Springer-Verlag Berlin Heide
影响因子This book is a report of a four-day Symposium on the Biochemistry and Physiology of Visual Pigments, which took place immediately after the VIth International Congress on Photobiology, held in Bochum, Federal Republic of Germany, in August 1972. This meeting, which brought together about 50 investigators of various aspects of the visual process, was devoted to the visual cells of both vertebrates and invertebrates. Whereas the International Symposium on the Biochemistry of the Retina, held at Nij­ megen, The Netherlands, in 1968, had concentrated on vertebrate photoreceptors, this Symposium dealt with invertebrate photoreceptors as well, so that workers in each field could become acquainted with recent progress in the other area. The papers presented at the Symposium were divided into six main topics, to each of which a half-day session was devoted. The six parts of this book, following the intro­ ductory lecture, essentially correspond to these sessions. In addition to the invited con­ tributions, the volume contains a number of short communications by other partici­ pants and two contributions by invited participants, who were unable to attend. The volume closes, as did the Sympo
Pindex Conference proceedings 1973
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Kortison-Stoßtherapie bei multipler Sklerosen the absence of NADPH to release of all-trans retinaldehyde. The NADPH-dependent release of retinol is due to the action of a retinoldehydrogenase present in the rod sac membrane, which is capable of reduction of free retinaldehyde as well as of reductive hydrolysis of retinylidene aldimines (4, 5).
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https://doi.org/10.1007/978-3-642-92189-6tly the denaturation of the protein has some effect upon the binding of the chromophoric group and it is of interest to see whether this weakening would affect the quantum yield of photobleaching of rhodopsin.
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https://doi.org/10.1007/978-3-662-36548-9e ref. 6), while a retina stripped away from its pigment epithelium then replaced and bleached regenerates as much as 55– 88% (cf. Kühne, 7). The amount regenerated appears somewhat lower when the retina is separated, bleached and then replaced, but it is still considerably more than in the isolated retina.
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,, (Fortsetzung und Schluss). — ,. — ,,result of visual pigment bleaching. Our recent studies (9, 10) indicate some of the metabolic requirements for rapid complete regeneration of photosensitive pigment in preparations of bleached bovine photoreceptors incubated with all-trans retinal.
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Chromophore Migration after Illumination of Rhodopsinn the absence of NADPH to release of all-trans retinaldehyde. The NADPH-dependent release of retinol is due to the action of a retinoldehydrogenase present in the rod sac membrane, which is capable of reduction of free retinaldehyde as well as of reductive hydrolysis of retinylidene aldimines (4, 5).
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The Effect of Urea upon the Photosensitivity of Bovine Rhodopsintly the denaturation of the protein has some effect upon the binding of the chromophoric group and it is of interest to see whether this weakening would affect the quantum yield of photobleaching of rhodopsin.
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