Cooperativity and Regulation in Biochemical Processes PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Cooperativity and Regulation in Biochemical Processes PDF full book. Access full book title Cooperativity and Regulation in Biochemical Processes by Arieh Y. Ben-Naim. Download full books in PDF and EPUB format.

Cooperativity and Regulation in Biochemical Processes

Cooperativity and Regulation in Biochemical Processes PDF Author: Arieh Y. Ben-Naim
Publisher: Springer Science & Business Media
ISBN: 147573302X
Category : Science
Languages : en
Pages : 358

Book Description
This is the first book that attempts to study the origin of cooperatvity in binding systems from the molecular point of view. The molecular approach provides a deeper insight into the mechanism of cooperativity and regulation, than the traditional phenomenological approach. This book uses the tools of statistical mechanics to present the molecular theory of cooperativity. Cooperativity is used in a variety of processes-such as loading and unloading of oxygen at relatively small pressure differences; maintaining an almost constant concentration of various compounds in living cells; and switching on and off the reading of genetic information. This book may be used as a textbook by graduate students in Chemistry, Biochemistry and Biophysics, and will also be of interest to researchers in theoretical biochemistry.

Cooperativity and Regulation in Biochemical Processes

Cooperativity and Regulation in Biochemical Processes PDF Author: Arieh Y. Ben-Naim
Publisher: Springer Science & Business Media
ISBN: 147573302X
Category : Science
Languages : en
Pages : 358

Book Description
This is the first book that attempts to study the origin of cooperatvity in binding systems from the molecular point of view. The molecular approach provides a deeper insight into the mechanism of cooperativity and regulation, than the traditional phenomenological approach. This book uses the tools of statistical mechanics to present the molecular theory of cooperativity. Cooperativity is used in a variety of processes-such as loading and unloading of oxygen at relatively small pressure differences; maintaining an almost constant concentration of various compounds in living cells; and switching on and off the reading of genetic information. This book may be used as a textbook by graduate students in Chemistry, Biochemistry and Biophysics, and will also be of interest to researchers in theoretical biochemistry.

Cooperativity and Regulation in Biochemical Processes

Cooperativity and Regulation in Biochemical Processes PDF Author: Arieh Ben-Naim
Publisher:
ISBN: 9781475733037
Category :
Languages : en
Pages : 368

Book Description


Molecular Biology of the Cell

Molecular Biology of the Cell PDF Author:
Publisher:
ISBN: 9780815332183
Category : Cells
Languages : en
Pages : 0

Book Description


The Fluctuating Enzyme

The Fluctuating Enzyme PDF Author: G. Rickey Welch
Publisher: Wiley-Interscience
ISBN:
Category : Science
Languages : en
Pages : 520

Book Description
There have emerged a number of theoretical models of enzyme action which maintain that classes of fluctuations in the protein structure provide means for generating high energy-free events at the active center. The purpose of the present volume is to review these theoretical pursuits.

Biophysics DeMYSTiFied

Biophysics DeMYSTiFied PDF Author: Daniel Goldfarb
Publisher: McGraw Hill Professional
ISBN: 0071633650
Category : Science
Languages : en
Pages : 400

Book Description
Learn BIOPHYSICS without expending a lot of ENERGY! Interested in unraveling the physics of living things? Here's your starting point. Biophysics Demystified is the fast and easy way to understand this fascinating topic. Written in a step-by-step format, this practical guide begins with an introduction to the science of biophysics, covering biophysical techniques and applications. Next, you'll learn the principles of physics, biology, and chemistry required to understand biophysics, including free energy, entropy, and statistical mechanics. Biomolecules and the forces that influence their structure and conformation are also covered, as are protein, nucleic acid, and membrane biophysics. Detailed examples and concise explanations make it easy to understand the material, and end-of-chapter quizzes and a final exam help reinforce key concepts. It's a no-brainer! You'll get: Molecular, subcellular, physiological, anatomical, and environmental biophysics The laws of thermodynamics as they apply to biophysical systems Forces affecting conformation in biological molecules The composition and structure of carbohydrates, lipids, proteins, and nucleic acids The fluid mosaic model Simple enough for a beginner, but challenging enough for an advanced student, Biophysics Demystified makes this interdisciplinary subject easy to master.

Energetics of Biological Macromolecules, Part D

Energetics of Biological Macromolecules, Part D PDF Author: Jo M. Holt
Publisher: Elsevier
ISBN: 0080497179
Category : Science
Languages : en
Pages : 315

Book Description
This volume focuses on the cooperative binding aspects of energetics in biological macromolecules. Methodologies such as NMR, small-angle scattering techniques for analysis, calorimetric analysis, fluorescence quenching, and time resolved FRET measurements are discussed. *Methods for Evaluating Cooperativity in a Dimeric Hemoglobin*Multiple-Binding of Ligands to a Linear Biopolymer*Fluorescence Quenching Methods to Study Protein-Nucleic Acid Interactions*Linked Equilibria in Biotin Repressor Function: Thermodynamic, Structural and Kinetic Analysis

Structure and Mechanism in Protein Science

Structure and Mechanism in Protein Science PDF Author: Alan Fersht
Publisher: World Scientific Publishing Company
ISBN: 9789813225190
Category : Catalysis
Languages : en
Pages : 0

Book Description
The three-dimensional structure of proteins -- Chemical catalysis -- The basic equations of enzyme kinetics -- Measurement and magnitude of individual rate constants -- The pH dependence of enzyme catalysis -- Practical methods for kinetics and equilibria -- Detection of intermediates in enzymatic reactions -- Stereochemistry of enzymatic reactions -- Active-site-directed and enzyme-activated irreversible inhibitors : "affinity labels" and "suicide inhibitors" -- Conformational change, allosteric regulation, motors, and work -- Forces between molecules, and binding energies -- Enzyme-substrate complementarity and the use of binding energy in catalysis -- Specificity and editing mechanisms -- Recombinant DNA technology -- Protein engineering -- Case studies of enzyme structure and mechanism -- Protein stability -- Kinetics of protein folding -- Folding pathways and energy landscapes.

Physical Biology of the Cell

Physical Biology of the Cell PDF Author: Rob Phillips
Publisher: Garland Science
ISBN: 1134111584
Category : Science
Languages : en
Pages : 1089

Book Description
Physical Biology of the Cell is a textbook for a first course in physical biology or biophysics for undergraduate or graduate students. It maps the huge and complex landscape of cell and molecular biology from the distinct perspective of physical biology. As a key organizing principle, the proximity of topics is based on the physical concepts that

Regulation of Tissue Oxygenation, Second Edition

Regulation of Tissue Oxygenation, Second Edition PDF Author: Roland N. Pittman
Publisher: Biota Publishing
ISBN: 1615047212
Category : Medical
Languages : en
Pages : 117

Book Description
This presentation describes various aspects of the regulation of tissue oxygenation, including the roles of the circulatory system, respiratory system, and blood, the carrier of oxygen within these components of the cardiorespiratory system. The respiratory system takes oxygen from the atmosphere and transports it by diffusion from the air in the alveoli to the blood flowing through the pulmonary capillaries. The cardiovascular system then moves the oxygenated blood from the heart to the microcirculation of the various organs by convection, where oxygen is released from hemoglobin in the red blood cells and moves to the parenchymal cells of each tissue by diffusion. Oxygen that has diffused into cells is then utilized in the mitochondria to produce adenosine triphosphate (ATP), the energy currency of all cells. The mitochondria are able to produce ATP until the oxygen tension or PO2 on the cell surface falls to a critical level of about 4–5 mm Hg. Thus, in order to meet the energetic needs of cells, it is important to maintain a continuous supply of oxygen to the mitochondria at or above the critical PO2 . In order to accomplish this desired outcome, the cardiorespiratory system, including the blood, must be capable of regulation to ensure survival of all tissues under a wide range of circumstances. The purpose of this presentation is to provide basic information about the operation and regulation of the cardiovascular and respiratory systems, as well as the properties of the blood and parenchymal cells, so that a fundamental understanding of the regulation of tissue oxygenation is achieved.

Inspired by Biology

Inspired by Biology PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309134293
Category : Science
Languages : en
Pages : 170

Book Description
Scientists have long desired to create synthetic systems that function with the precision and efficiency of biological systems. Using new techniques, researchers are now uncovering principles that could allow the creation of synthetic materials that can perform tasks as precise as biological systems. To assess the current work and future promise of the biology-materials science intersection, the Department of Energy and the National Science Foundation asked the NRC to identify the most compelling questions and opportunities at this interface, suggest strategies to address them, and consider connections with national priorities such as healthcare and economic growth. This book presents a discussion of principles governing biomaterial design, a description of advanced materials for selected functions such as energy and national security, an assessment of biomolecular materials research tools, and an examination of infrastructure and resources for bridging biological and materials science.