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Brings together key new results of interdisciplinary collaborations among various research fields on rhodopsin including the photoreceptive mechanism of rhodopsins, the molecular mechanism of the visual transduction process, visual processes in the retina and other transduction processes in the retina and brain. The structures of the rhodopsin molecule are studied in the fields of protein chemistry, molecular biology, organic chemistry and structural biology; the ultra fast reactions of the retinal protein are studied in physics, biophysics, physical chemistry, organic chemistry and photobiology; the phototransduction in retinal proteins and visual cells are studied in biophysics, biochemistry, biophysical chemistry and photobiology; and the localization in the tissues is studied in anatomy and histochemistry. The diversity of visual systems in various animals is studied in zoology and comparative biochemistry.
The aim of the 5th International Conference on Retinal Proteins was to present the findings of the interdisciplinary fields where photochemical, biophysical, molecular biology and physiological aspects are intimately linked. This title covers nearly all the presentations given during this symposium.
Photoreceptor Cells, Volume 15 covers the advances in the study of photoreceptor cells. The book discusses biochemical, cell and structural biological, and molecular biological techniques needed for the study of photoreceptor cells. The text also describes the methods for observing the structure of photoreceptor cells and for studying their metabolism. The procedures for photoreceptor cell isolation are also considered. The book further tackles the preparation of proteins involved in rod cell metabolism, with particular emphasis on proteins of the visual transduction cascade. The text also encompasses the application of molecular biological techniques for the examination of molecular components of the visual system and their structure, distribution, and function. Neuroscientists, ophthalmologists, biochemists, and people involved in the study of photoreceptor cells will find the book invaluable.
Significant progress has been made in the research into the molecular basis of vision, especially retinal proteins, which are the components of visual reception. The results of these studies open wide prospects for their application in medicine and in the construction of unique light-sensitive materials for holography and microelectronics. Therefore, research into retinal proteins is not only important for understanding the mechanisms of the native light-transducing systems but also for the development of new technologies. An international group of scientists discussed the key aspects of the study of light-sensitive systems at the Conference on Retinal Proteins held in July 1986. This Proceedings volume contains 45 papers that were presented on this important topic in molecular biology.
The main purpose of this volume is to provide a focused analysis of the function of the G protein-coupled signaling pathways that operate in the interconnected network of retinal neurons as they detect and encode the information carried by light. The organization of this volume will generally follow the path of signal flow in the retina. First we will describe recent advances in understanding the phototransduction cascade of rod and cone photoreceptors, which use signaling cascade based on the GPCR rhodopsin to transduce incident light into neural activity. Chapters will be devoted to unique specializations of the two major types of photosensitive cells that comprise the predominant input for our spatial and color vision. Subsequently, the mechanisms of synaptic information encoding by retinal ON bipolar cells will be described, where the GPCR mGluR6 plays a fundamental role. Chapters in this section will examine macromolecular organization of the mGluR6 signaling pathway as well as current understanding of its function. The functional characteristics of this signaling mechanism will be explored in detail. Additionally, this section will cover the role of dopamine receptors in modulating signal transmission between photoreceptors and ON-bipolar cells. Finally, chapters will be focused on the output neurons of the inner retina, ganglion cells, where the components of the emerging GPCR melanopsin cascade in intrinsically photosensitive ganglion cells will be detailed. Collectively these mechanisms allow the retina to represent visual space over a wide range of light intensities.
Major topics covered include photoreceptor proteins, phototransduction calcium-binding proteins and calcium measurement in photoreceptor cells, enzymes of the visual cycle, posttranslational and chemical modifications, analysis of animal models of retinal diseases. Inherited retinal disease; from the defective gene to its function and repair. This volume and its companion Volume 315 include newly developed methods to study vertebrate phototransduction and the visual cycle. The critically acclaimed laboratory standard for more than forty years, Methods in Enzymology is one of the most highly respected publications in the field of biochemistry. Since 1955, each volume has been eagerly awaited, frequently consulted, and praised by researchers and reviewers alike. Now with more than 300 volumes (all of them still in print), the series contains much material still relevant today--truly an essential publication for researchers in all fields of life sciences.