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Membrane Bioenergetics

Membrane Bioenergetics
Author: Vladimir P. Skulachev
Publisher: Springer Science & Business Media
Total Pages: 453
Release: 2013-11-11
Genre: Science
ISBN: 3642729789

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Membrane bioenergetics is one of the most rapidly growing areas within physico-chemical biology. Main aspects treated in this book include energy conservation and utilization by membrane-linked molecular mechanisms such as intracellular respiration, photosynthesis, transport phenomena, rotation of bacterial flagella, and the regulation of heat production.


Energy Transduction in Biological Membranes

Energy Transduction in Biological Membranes
Author: William A. Cramer
Publisher: Springer Science & Business Media
Total Pages: 553
Release: 2012-12-06
Genre: Science
ISBN: 1461232201

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Energy Transduction in Biological Membranes was primarily designed for graduate courses in bioenergetics. Not only does it discuss basic principles and concepts central to modern membrane biochemistry, biophysics and molecular biology, but also (1) the components and pathways for electron transport and hydrogen ion translocation, and (2) the utilization of electrochemical ion gradients. The book is unique in presenting a comparative treatment of respiratory and photosynthetic energy transduction, and in using protein sequence data coupled with physical concepts to discuss the mechanisms of energy transducing proteins.


The Enzymes of Biological Membranes

The Enzymes of Biological Membranes
Author: Anthony Martonosi
Publisher: Springer Science & Business Media
Total Pages: 605
Release: 2013-03-09
Genre: Science
ISBN: 1468446045

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In the first edition of The Enzymes of Biological Membranes, published in four volumes in 1976, we collected the mass of widely scattered information on membrane-linked enzymes and metabolic processes up to about 1975. This was a period of transition from the romantic phase of membrane biochemistry, preoccupied with conceptual developments and the general properties of membranes, to an era of mounting interest in the specific properties of membrane-linked enzymes analyzed from the viewpoints of modem enzymology. The level of sophistication in various areas of membrane research varied widely; the structures of cytochrome c and cytochrome b were known s to atomic detail, while the majority of membrane-linked enzymes had not even been isolated. In the intervening eight years our knowledge of membrane-linked enzymes ex panded beyond the wildest expectations. The purpose of the second edition of The Enzymes of Biological Membranes is to record these developments. The first volume describes the physical and chemical techniques used in the analysis of the structure and dynamics of biological membranes. In the second volume the enzymes and met abolic systems that participate in the biosynthesis of cell and membrane components are discussed. The third and fourth volumes review recent developments in active transport, oxidative phosphorylation, and photosynthesis.


Advances in Membrane Biochemistry and Bioenergetics

Advances in Membrane Biochemistry and Bioenergetics
Author: Chong H. Kim
Publisher: Springer Science & Business Media
Total Pages: 580
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1468486403

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This book is formulated from the papers presented at the International Symposium on "Membrane Biochemistry and Bioenergetics," held at the Rensselaerville Institute, Rensselaerville, New York, August 1986, in honor of Tsoo E. King on the occasion of the 30th anniversary of reconstitution of arespiratory chain system by Professor David Keilin and Tsoo E. King. Professor Tsoo E. King, to whom this volume is dedicated, has made enormous contributions to the field of isolation and reconstitution of membrane proteins and has continued to explore the frontiers of bioener getics. In particular, his persistent proposals on the existence of ubiquinone binding proteins from conceptualization to experimentation eventually convinced many scientists to study these proteins further . Professor King's preparation of reconstitutively active succinate dehydrogenase opened a new avenue in the fie1d of membrane bioenergetics, and his work has been greatly appreciated. The purpose of the symposium was to bring together scientists from diverse disciplines related to membrane bioenergetics to discuss the recent developments in the field. This symposium, initiated by the Capital District Bioenergetics Group, was attended by 100 scientists, 80 of whom presented their recent discoveries. The symposium was arranged in a sequence of platform lectures, poster presentations and discussion sessions so that all the participants had opportunities to discuss the subjects presented. Most of the participants contributed a chapter to this volume. We would like to express our regret to many other scientists including Professor King's friends, colleagues and students who could not attend due to various reasons.


Bioenergetics of Membranes

Bioenergetics of Membranes
Author: Lester Packer
Publisher: Elsevier-North-Holland Biomedical Press
Total Pages: 552
Release: 1977
Genre: Science
ISBN:

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The Molecular Biology of Membranes

The Molecular Biology of Membranes
Author: S. Fleischer
Publisher: Springer Science & Business Media
Total Pages: 354
Release: 2012-12-06
Genre: Science
ISBN: 1468424637

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On February 14, 1977, a symposium entitled "The Molecular Biology of Membranes" was held in New Orleans in honor of Professor David E. Green, whose many contributions in mitochondrial structure and metabolism have influenced and guided research in this important area of biochemistry for many years. The symposium was attended by many former and present-day colleagues, friends, and interested scientists. The contents of this volume represent papers that were delivered at the symposium and other contributions from individuals who have been associates of Professor Green. We wish to thank Plenum Press for their help in making the symposium and publication of this book possible. Sidney Fleischer Youssef Hatefi David MacLennan Alexander Tzagoloff vii Contents Impressions of David E. Green by His Colleagues . . . . . . . . . . . . . . 1 Enzyme Institute Days 13 F. M. Huennekens Perspective for the Mitochondrion 17 David E. Green Chapter 1 Organization of Protein and Lipid Components in Membranes 29 Garret Vanderkooz Chapter 2 Structure of the Mitochondrion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 57 Robert A. Haworth and Douglas R. Hunter Chapter 3 Permeability of Membrane as a Factor Determining the Rate of Mitochondrial Respiration: Role of Ultrastructure . . . . . . . . . . . . . . 75 Jerzy Popinigis Chapter 4 Chemistry of Intrinsic Membrane Protein Complexes: Studies on Complex III and Cytochrome c Oxidase . . . . . . . . . . . . . . . . . . . . . . . 103 Roderick A. Capaldi ix x Contents Chapter 5 Reversible Mitochondrial ATPase as a Model for the Resolution of a 121 Membrane Complex A. E.


Molecular Biology of Membranes

Molecular Biology of Membranes
Author: H.R. Petty
Publisher: Springer Science & Business Media
Total Pages: 416
Release: 2013-06-29
Genre: Science
ISBN: 1489911464

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This text attempts to introduce the molecular biology of cell membranes to students and professionals of diverse backgrounds. Although several membrane biology books are available, they do not integrate recent knowledge gained using modern molecular tools with more traditional membrane topics. Molecular techniques, such as cDNA cloning and x-ray diffraction, have provided fresh insights into cell membrane structure and function. The great excitement today, which I attempt to convey in this book, is that molecular details are beginning to merge with physiological responses. In other words, we are beginning to understand precisely how membranes work. This textbook is appropriate for upper-level undergraduate or beginning graduate students. Readers should have previous or concurrent coursework in biochemistry; prior studies in elementary physiology would be helpful. I have found that the presentation of topics in this book is appropriate for students of biology, biochemistry, biophysics and physiology, chemistry, and medicine. This book will be useful in courses focusing on membranes and as a supplementary text in biochemistry courses. Professionals will also find this to be a useful resource book for their personal libraries.


Membrane Structure and Mechanisms of Biological Energy Transduction

Membrane Structure and Mechanisms of Biological Energy Transduction
Author: J. Avery
Publisher: Springer Science & Business Media
Total Pages: 596
Release: 2012-12-06
Genre: Science
ISBN: 146842016X

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The problem of electron transfer phosphorylation was first formu lated in 1939 by Belitser and Tsibakova I who introduced the "P: 0" criterion and showed that this ratio is more than 1. The authors noted that such a high value of the phosphorylation coefficient suggests a fundamental difference in the mechanisms of A TP formation coupled with respiration, and glycolysis, since in the latter case, the amount of the ATP synthesized is equal to that of the substrate utilized. A lot of hypothetical schemes were put forward to explain the nature of coupling between electron transfer and phosphorylation, but none of them solved the problem. Only quite recently, one hypo thetical scheme of energy coupling, viz. Mitchell's chemiosmotic concept, 2.3 was supported by experimental data which allow us to prefer it to alternative possibilities. In this paper, I shall try to substantiate the statement that oxidation and phosphorylation can be coupled via a membrane potential as was postulated by Mitchell.


Bioenergetics of Membranes

Bioenergetics of Membranes
Author: International Symposium on Membrane Bioenergetics, Spetsai, 1977
Publisher:
Total Pages: 538
Release: 1977
Genre: Bioenergetics
ISBN:

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Principles of Bioenergetics

Principles of Bioenergetics
Author: Vladimir P. Skulachev
Publisher: Springer Science & Business Media
Total Pages: 435
Release: 2012-12-15
Genre: Science
ISBN: 364233430X

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Principles of Bioenergetics summarizes one of the quickly growing branches of modern biochemistry. Bioenergetics concerns energy transductions occurring in living systems and this book pays special attention to molecular mechanisms of these processes. The main subject of the book is the "energy coupling membrane" which refers to inner membranes of intracellular organelles, for example, mitochondria and chloroplasts. Cellular cytoplasmic membranes where respiratory and photosynthetic energy transducers, as well as ion-transporting ATP-synthases (ATPases) are also part of this membrane. Significant attention is paid to the alternative function of mitochondria as generators of reactive oxygen species (ROS) that mediate programmed death of cells (apoptosis and necrosis) and organisms (phenoptosis). The latter process is considered as a key mechanism of aging which may be suppressed by mitochondria-targeted antioxidants.