Home Shop Service Jobs Newsletter Company Sitemap Entertainment Shopping cart Deutsch
Books | Chemistry | Computational Chemistry & Molecular Modeling | Modeling Solvent Environments
Browse our products
Books
 
Just published
Title search
Featured sites
Entertainment
Journals
Electronic Media
Choose your area of interest
 
Feig, Michael (ed.)
Modeling Solvent Environments
Applications to Simulations of Biomolecules

1. Edition - January 2010
129.- Euro
2010. XVIII, 316 Pages, Hardcover
77 Fig. (20 Colored Fig.), 10 Tab. 
- Monograph -
ISBN-10: 3-527-32421-6
ISBN-13: 978-3-527-32421-7 - Wiley-VCH, Weinheim


Order



Content

Sample Chapter

Index



Short description
A comprehensive view of current methods for modeling solvent environments in simulations. With its focus on the simulation of biological systems, the concepts presented here are also applicable to other systems in chemistry and material science.

From the contents
BIOMOLECULAR SOLVATION IN THEORY AND EXPERIMENT
Introduction
Theoretical Views of Solvation
Computer Simulation Methods in the Study of Solvation
Experimental Methods in the Study of Solvation
Hydration of Proteins
Hydration of Nucleic Acids
Non-Aqueous Solvation
Summary
MODEL-FREE ?SOLVENT MODELING? IN CHEMISTRY AND BIOCHEMISTRY BASED ON THE STATISTICAL MECHANICS OF LIQUIDS
Introduction
Outline of the RISM and 3D-RISM Theories
Partial Molar Volume of Proteins
Detecting Water Molecules Trapped Inside Protein
Selective Ion Binding by Protein
Water Molecules Identified as a Substrate for Enzymatic hydrolysis of Cellulose
CO Escape Pathway in Myoglobin
Perspective
DEVELOPING FORCE FIELDS FROM THE MICROSCOPIC STRUCTURE OF SOLUTIONS: THE KIRKWOOD-BUFF APPROACH
Introduction
Biomolecular Force Fields
Examples of Problems with Current Force Fields
Kirkwood-Buff Theory
Applications of Kirkwood-Buff Theory
The General KBFF Approach
Technical Aspects of the KBFF Approach
Results for Urea and Water Binary Solutions
Preferential Interactions of Urea
Conclusions and Future Directions
OSMOLYTE INFLUENCE ON PROTEIN STABILITY: PERSPECTIVES OF THEORY AND EXPERIMENT
Introduction
Denaturing Osmolytes
Protecting Osmolytes
Mixed Osmolytes
Conclusions
MODELING AQUEOUS SOLVENT EFFECTS THROUGH LOCAL PROPERTIES OF WATER
The Role of Water and Cosolutes on Macromolecular Thermodynamics
Forces Induced by Water in Aqueous Solutions
Continuum Representation of Water
Modeling Water Effects on Proteins and Nucleic Acids
CONTINUUM ELECTROSTATICS SOLVENT MODELING WITH THE GENERALIZED BORN MODEL
Introduction: The Implicit Solvent Framework
The Generalized Born Model
Applications of the GB Model
Some Practical Considerations
Limitations of the GB Model
Conclusions and Outlook
IMPLICIT SOLVENT FORCE-FIELD OPTIMIZATION
Introduction
Theoretical Foundations of Implicit Solvent
Optimization of Implicit Solvent Force Fields
Concluding Remarks and Outlook
MODELING PROTEIN SOLUBILITY IN IMPLICIT SOLVENT
Introduction
The Models
Applications
Summary and Outlook
FAST ANALYTICAL CONTINUUM TREATMENTS OF SOLVATION
Introduction
The SASA Implicit Solvent Model: A Fast Surface Area Model
The FACTS Implicit Solvent Model. A Fast Generalized Born Approach
Conclusions
ON THE DEVELOPMENT OF STATE-SPECIFIC COARSE-GRAINED POTENTIALS OF WATER
Introduction
Methods of Computing Coarse-Grained Potentials of Liquid Water
Structural Properties and the ?Representability? Problem of Coarse-Grained Liquid Water Models
Conclusions
MOLECULAR DYNAMICS SIMULATIONS OF BIOMOLECULES IN A POLARIZABLE COARSE-GRAINED SOLVENT
Introduction
Theory
Applications: Solvation of All-Atom Models of Biomolecules
Conclusions and Prospects
MODELING ELECTROSTATIC POLARIZATION IN BIOLOGICAL SOLVENTS
Introduction
Current Approaches for Modeling Electrostatic Polarization in Classical Force Fields
Parameterization of Charge Equilibration Models
Applications of Charge Equilibration Models for Biological Solvents
Toward Modeling of Membrane Ion Channel Systems: Molecular Dynamics Simulations of DMPC-Water and DPPC-Water Bilayer Systems
Conclusions and Future Directions



 
Order
Online book
Short description
Detailed description
Author information
Author affiliation

Related Books

Quantum Biochemistry

Molecular Modeling
Basic Principles and Applications

Protein Folding Handbook


[more >>]

Related Journals

Angewandte Chemie

Angewandte Chemie International Edition

Chemie Ingenieur Technik


[more>>]

Special Offers

Christie, Daniel J. (ed.)

The Encyclopedia of Peace Psychology
385.- Euro
valid until
31 March 2012

[more offers >>]


 

        

Tell a friend          RSS Feeds             Print-Version

©2012 Wiley-VCH Verlag GmbH & Co. KGaA - Provider
http://www.wiley-vch.de - mailto: info@wiley-vch.de
Data Protection