Molecular and Cellular Aspects of Muscle Contraction

Molecular and Cellular Aspects of Muscle Contraction
Author: Haruo Sugi
Publisher: Springer Science & Business Media
Total Pages: 675
Release: 2012-12-06
Genre: Science
ISBN: 1441990291

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This volume presents the proceedings of a muscle symposium, which was supported by the grant from the Fujihara Foundation of Science to be held as the Fourth Fujihara Seminar on October 28 -November 1, 2002, at Hakone, Japan. The Fujihara Seminar covers all fields of natural science, while only one proposal is granted every year. It is therefore a great honor for me to be able to organize this meeting. Before this symposium, I have organized muscle symposia five times, and published the proceedings: " Cross-bridge Mechanism in Muscle Contraction (University of Tokyo Press, 1978), "Contractile Mechanisms in Muscle" (plenum, 1984); "Molecular Mechanisms of Muscle Contraction" (plenum, 1988); "Mechanism of MyofIlament Sliding in Muscle contraction" (plenum, 1993); "Mechanisms of Work Production and Work Absorption in Muscle" (plenum, 1998). As with these proceedings, this volume contains records of discussions made not only after each presentation but also during the periods of General Discussion, in order that general readers may properly evaluate each presentation and the up-to-date situation of this research field. It was my great pleasure to have Dr. Hugh Huxley, a principal discoverer of the sliding fIlament mechanism in muscle contraction, in this meeting. On my request, Dr. Huxley kindly gave a special lecture on his monumental discovery of myofIlament-lattice structure by X-ray diffraction of living skeletal muscle. I hope general readers to learn how a breakthrough in a specific research field can be achieved.

Muscle Contraction and Cell Motility

Muscle Contraction and Cell Motility
Author: H. Sugi
Publisher: Springer Science & Business Media
Total Pages: 276
Release: 2012-12-06
Genre: Science
ISBN: 3642769276

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This volume intends to provide a comprehensive overview on the mecha nisms of muscle contraction and non-muscle cell motility at the molecu lar and cellular level, not only for investigators in these fields but also for general readers interested in these topics. A most attractive feature of various living organisms in the animal and plant kingdoms is their ability to move. In spite of a great diversity in the structure and function of various motile systems, it has frequently been assumed since the nineteenth century that all kinds of "motility" are essentially the same. Based on this assumption, some investigators in the nineteenth century thought that the mechanisms of motility could better be studied on primitive non-muscle motile systems such as amoeboid movement, rath er than on highly specialized muscle cells. Contrary to their expectation, however, the basic mechanisms of motility have been revealed solely by investigations on vertebrate skeletal muscles, since a monumental discovery of Szent-Gyorgyi and his coworkers in the early 1940s that muscle contraction results from the interaction between two different contractile proteins, actin and myosin, coupled with ATP hydrolysis.

Molecular Biology of The Cell

Molecular Biology of The Cell
Author: Bruce Alberts
Publisher:
Total Pages: 0
Release: 2002
Genre: Cytology
ISBN: 9780815332183

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Cellular Aspects of Smooth Muscle Function

Cellular Aspects of Smooth Muscle Function
Author: C. Y. Kao
Publisher: Cambridge University Press
Total Pages: 324
Release: 1997-08-28
Genre: Science
ISBN: 9780521482103

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Smooth muscles line many internal organs and, in general, are involved in moving fluids and slurry around the body. They are controlled by the action of hormones, by nervous stimulation, and can be influenced by drugs. This 1997 book provides a review of our understanding of smooth muscle and integrates molecular, cellular and physiological information with tissue and anatomical studies. Well-known researchers have written chapters giving detailed reviews of our current knowledge of the biochemistry, pharmacology, physiology and anatomy of smooth muscle. In particular, they cover the seven most important areas of smooth muscle function including morphology, electrophysiology, mechanisms of electromechanical and pharmacomechanical coupling, calcium homeostasis, signal transduction, mechanics of contraction, and the contractile proteins. All those interested in muscular contraction will find this book worthwhile, whether they are biochemists, physiologists, or cell biologists.

Comprehensive Human Physiology

Comprehensive Human Physiology
Author: Rainer Greger
Publisher: Springer Science & Business Media
Total Pages: 2478
Release: 2013-11-11
Genre: Medical
ISBN: 3642609465

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Comprehensive Human Physiology is a significantly important publication on physiology, presenting state-of-the-art knowledge about both the molecular mechanisms and the integrative regulation of body functions. This is the first time that such a broad range of perspectives on physiology have been combined to provide a unified overview of the field. This groundbreaking two-volume set reveals human physiology to be a highly dynamic science rooted in the ever-continuing process of learning more about life. Each chapter contains a wealth of original data, clear illustrations, and extensive references, making this a valuable and easy-to-use reference. This is the quintessential reference work in the fields of physiology and pathophysiology, essential reading for researchers, lecturers and advanced students.

Molecular and Cellular Aspects of Muscle Function

Molecular and Cellular Aspects of Muscle Function
Author: E. Varga
Publisher: Elsevier
Total Pages: 454
Release: 2014-05-09
Genre: Science
ISBN: 1483280705

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Advances in Physiological Sciences, Volume 5: Molecular and Cellular Aspects of Muscle Function covers the proceedings of the 28th International Congress of Physiological Sciences, held in Budapest in 1980 (including the proceedings of the satellite symposium on Membrane Control of Skeletal Muscle Function). The book focuses on the molecular and cellular facets of skeletal muscle function. The selection first offers information on the mechanical properties of cross-bridges and their relation to muscle contraction; molecular basis of functional specialization in muscle as induced by innervation; and electrical properties of crustacean muscle membranes. The text then ponders on contractile protein isoforms in developing muscle; effect of age and exercise on minced gastrocnemius muscle regeneration; and contractile proteins of rat gastrocnemius during its regeneration after mincing. The publication examines the behavior of myosin projections in frog striated muscle during isometric contraction; energetics of contracting muscle and its relation to crossbridge mechanisms; and time course of chemical change and energy production during contraction of frog skeletal muscle. The physiological analysis of human myopathy and adaptation in normal and diseased muscle are also discussed. The selection is a vital source of data for readers interested in the cellular and molecular aspects of muscle function.

Muscle Biophysics

Muscle Biophysics
Author: Rassier Dilson J.E
Publisher: Springer Science & Business Media
Total Pages: 360
Release: 2010-09-08
Genre: Science
ISBN: 1441963669

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Muscle contraction has been the focus of scientific investigation for more than two centuries, and major discoveries have changed the field over the years. Early in the twentieth century, Fenn (1924, 1923) showed that the total energy liberated during a contraction (heat + work) was increased when the muscle was allowed to shorten and perform work. The result implied that chemical reactions during contractions were load-dependent. The observation underlying the “Fenn effect” was taken to a greater extent when Hill (1938) published a pivotal study showing in details the relation between heat production and the amount of muscle shortening, providing investigators with the force-velocity relation for skeletal muscles. Subsequently, two papers paved the way for the current paradigm in the field of muscle contraction. Huxley and Niedergerke (1954), and Huxley and Hanson (1954) showed that the width of the A-bands did not change during muscle stretch or activation. Contraction, previously believed to be caused by shortening of muscle filaments, was associated with sliding of the thick and thin filaments. These studies were followed by the classic paper by Huxley (1957), in which he conceptualized for the first time the cross-bridge theory; filament sliding was driven by the cyclical interactions of myosin heads (cross-bridges) with actin. The original cross-bridge theory has been revised over the years but the basic features have remained mostly intact. It now influences studies performed with molecular motors responsible for tasks as diverse as muscle contraction, cell division and vesicle transport.

Calcium in Muscle Contraction

Calcium in Muscle Contraction
Author: Johann C. Rüegg
Publisher: Springer Science & Business Media
Total Pages: 365
Release: 2012-12-06
Genre: Science
ISBN: 3642775608

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Recent years have witnessed an explosion of knowledge lea- ding to a molecular understanding of the mechanisms of ac- tion of calcium on excitation and contraction coupling and its role in the regulation of contractility. This book highlights the most recent progress as well as providing a historial perspective of the field. It presents a concise and comprehensive overview of our current knowledge regar- ding calcium channels and regulatory proteins as well as in- tracellular calcium handling and the mechanisms underlying the activation of contractile proteins. It also describes how these basic mechanisms have been adapted in various types of muscle, especially in cardiac and smooth muscle.

Mechanism of Muscular Contraction

Mechanism of Muscular Contraction
Author: Jack A. Rall
Publisher: Springer
Total Pages: 480
Release: 2014-10-21
Genre: Medical
ISBN: 1493920073

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This book describes the evolution of ideas relating to the mechanism of muscular contraction since the discovery of sliding filaments in 1954. An amazing variety of experimental techniques have been employed to investigate the mechanism of muscular contraction and relaxation. Some background of these various techniques is presented in order to gain a fuller appreciation of their strengths and weaknesses. Controversies in the muscle field are discussed along with some missed opportunities and false trails. The pathway to ATP and the high energy phosphate bond will be discussed, as well as the discovery of myosin, contraction coupling and the emergence of cell and molecular biology in the muscle field. Numerous figures from original papers are also included for readers to see the data that led to important conclusions. This book is published on behalf of the American Physiological Society by Springer. Access to APS books published with Springer is free to APS members.