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This book provides up-to-date information on some of the most important aspects of ryanodine receptor function and has been written by experts in the field. Included are reviews of the latest experimental data, critical assessments of the mechanisms of ryanodine receptor activation and regulation, and the role of the channel in controlling intracellular Ca2+ release.The approach to this subject is new. The book focuses on the biochemical and biophysical aspects of ryanodine receptor research, with particular emphasis on the single channel properties of reconstituted ryanodine receptors.
In recent years, the ryanodine receptor has emerged as a new and very promising target for the treatment of several cardiovascular disorders, including cardiac arrhythmias and heart failure. This volume is the most current publication devoted to the major intracellular calcium-release channel, the ryanodine receptor. "In this series of brief but informative chapters, the contributions progress from the basic gene family and primary structure, through its 3D structure so far, to its regulation and physiology." David E. Clapham, MD, PhD Professor of Neurobiology and Pediatrics Harvard Medical School Dr. Xander H.T. Wehrens received his M.D. and Ph.D. degrees from Maastricht University in the N...
No. 2, pt. 2 of November issue each year from v. 19 (1963)-47 (1970) and v. 55 (1972)- contain the Abstracts of papers presented at the Annual Meeting of the American Society for Cell Biology, 3d (1963)-10th (1970) and 12th (1972)-
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How is the heartbeat generated? What controls the strength of contraction of heart muscle? What are the links between cardiac structure and function? How does our understanding of skeletal and smooth muscle and non-muscle cells influence our thinking about force development in the heart? Are there important species differences in how contraction is regulated in the heart? How do the new molecular data fit together in understanding the heart beat? What goes wrong in ischemia, hypertrophy, and heart failure? This book paints a modern `portrait' of how the heart works and in this picture the author shows a close-up of the structural, biochemical, and physiological links between excitation and c...
In recent years, the field of Toxinology has expanded substantially. On the one hand it studies venomous animals, plants and micro organisms in detail to understand their mode of action on targets. While on the other, it explores the biochemical composition, genomics and proteomics of toxins and venoms to understand their three interaction with life forms (especially humans), development of antidotes and exploring their pharmacological potential. Therefore, Toxinology has deep linkages with biochemistry, molecular biology, anatomy and pharmacology. In addition, there is a fast developing applied subfield, clinical toxinology, which deals with understanding and managing medical effects of tox...
DON'T HAVE A DREAM?HAVE A DREAM BUT FACE TOO MANY OBSTACLES? Overcome the self-inflicting wounds that have kept you from pursuing your dream. Break free from others' expectations & discover YOUR dream. Efficiently execute using very practical productivity strategies. MOST DREAMS DIE BEFORE THEY EVER BEGINGET OUT OF YOUR OWN WAYSTEP INTO A NEW DAY. Fear Not Dream BIG & Execute: Tools to Spark Your Dream and Ignite Your Follow-Through by Jeff Meyer will ignite the spark to unleash your dream. Help yourself and ignite a bold dream. And then, lead boldly. Packed with life lessons and tools, Jeff Meyer invites you to linger where you will. More like a weekly dose of encouragement than a novel, yo...