Protein Structural Knowledge Engineering
Author : Robert Mark Abarbabel
Publisher :
Page : 852 pages
File Size : 23,10 MB
Release : 1984
Category : Amino acid sequence
ISBN :
Author : Robert Mark Abarbabel
Publisher :
Page : 852 pages
File Size : 23,10 MB
Release : 1984
Category : Amino acid sequence
ISBN :
Author : Kristian Müller
Publisher : Springer Science & Business Media
Page : 318 pages
File Size : 27,78 MB
Release : 2007-10-26
Category : Science
ISBN : 1597451878
Protein engineering is a fascinating mixture of molecular biology, protein structure analysis, computation, and biochemistry, with the goal of developing useful or valuable proteins. Protein Engineering Protocols will consider the two general, but not mutually exclusive, strategies for protein engineering. The first is known as rational design, in which the scientist uses detailed knowledge of the structure and function of the protein to make desired changes. The s- ond strategy is known as directed evolution. In this case, random mutagenesis is applied to a protein, and selection or screening is used to pick out variants that have the desired qualities. By several rounds of mutation and selection, this method mimics natural evolution. An additional technique known as DNA shuffling mixes and matches pieces of successful variants to produce better results. This process mimics recombination that occurs naturally during sexual reproduction. The first section of Protein Engineering Protocols describes rational p- tein design strategies, including computational methods, the use of non-natural amino acids to expand the biological alphabet, as well as impressive examples for the generation of proteins with novel characteristics. Although procedures for the introduction of mutations have become routine, predicting and und- standing the effects of these mutations can be very challenging and requires profound knowledge of the system as well as protein structures in general.
Author : Mallorie N. Sheehan
Publisher : Nova Science Publishers
Page : 0 pages
File Size : 40,27 MB
Release : 2013-07
Category : Protein engineering
ISBN : 9781626188785
Protein engineering is the process of developing useful or valuable proteins. It is a young discipline, with much research currently taking place into the understanding of protein folding and protein recognition for protein design principles. There are two general strategies for protein engineering. The first is known as rational design, in which the scientist uses detailed knowledge of the structure and function of the protein to make desired changes. The second strategy is known as directed evolution and this is where random mutagenesis is applied to a protein, and a selection regime is used to pick out variants that have the desired qualities. This book presents and reviews important data on protein engineering, such as application of engineered proteins and cell adhesive surfaces as scaffolds or other biomedical devices which has the potential to promote tissue repair and regeneration for a wide variety of tissues including bone and skin.
Author : Huzefa Rangwala
Publisher : John Wiley & Sons
Page : 611 pages
File Size : 36,32 MB
Release : 2011-03-16
Category : Science
ISBN : 111809946X
A look at the methods and algorithms used to predict protein structure A thorough knowledge of the function and structure of proteins is critical for the advancement of biology and the life sciences as well as the development of better drugs, higher-yield crops, and even synthetic bio-fuels. To that end, this reference sheds light on the methods used for protein structure prediction and reveals the key applications of modeled structures. This indispensable book covers the applications of modeled protein structures and unravels the relationship between pure sequence information and three-dimensional structure, which continues to be one of the greatest challenges in molecular biology. With this resource, readers will find an all-encompassing examination of the problems, methods, tools, servers, databases, and applications of protein structure prediction and they will acquire unique insight into the future applications of the modeled protein structures. The book begins with a thorough introduction to the protein structure prediction problem and is divided into four themes: a background on structure prediction, the prediction of structural elements, tertiary structure prediction, and functional insights. Within those four sections, the following topics are covered: Databases and resources that are commonly used for protein structure prediction The structure prediction flagship assessment (CASP) and the protein structure initiative (PSI) Definitions of recurring substructures and the computational approaches used for solving sequence problems Difficulties with contact map prediction and how sophisticated machine learning methods can solve those problems Structure prediction methods that rely on homology modeling, threading, and fragment assembly Hybrid methods that achieve high-resolution protein structures Parts of the protein structure that may be conserved and used to interact with other biomolecules How the loop prediction problem can be used for refinement of the modeled structures The computational model that detects the differences between protein structure and its modeled mutant Whether working in the field of bioinformatics or molecular biology research or taking courses in protein modeling, readers will find the content in this book invaluable.
Author : Raffaele Giancarlo
Publisher : Springer
Page : 443 pages
File Size : 45,50 MB
Release : 2007-08-24
Category : Computers
ISBN : 3540741267
The refereed proceedings from the 7th International Workshop on Algorithms in Bioinformatics are provided in this volume. Papers address current issues in algorithms in bioinformatics, ranging from mathematical tools to experimental studies of approximation algorithms to significant computational analyses. Biological problems examined include genetic mapping, sequence alignment and analysis, phylogeny, comparative genomics, and protein structure.
Author : Jeffrey L. Cleland
Publisher : Wiley-Liss
Page : 558 pages
File Size : 40,63 MB
Release : 1996-02-07
Category : Science
ISBN :
This systematic approach to protein engineering provides a thorough introduction to protein biophysics via chapters dealing with the experimental and theoretical determination of protein structure. Separate chapters discuss each of the expression systems c
Author : Sheldon J. Park
Publisher : CRC Press
Page : 434 pages
File Size : 11,51 MB
Release : 2009-09-25
Category : Medical
ISBN : 1420076590
Experimental protein engineering and computational protein design are broad but complementary strategies for developing proteins with altered or novel structural properties and biological functions. By describing cutting-edge advances in both of these fields, Protein Engineering and Design aims to cultivate a synergistic approach to protein science
Author :
Publisher :
Page : 0 pages
File Size : 15,16 MB
Release : 2002
Category : Cells
ISBN : 9780815332183
Author : Ilan Samish
Publisher : Humana
Page : 0 pages
File Size : 24,58 MB
Release : 2016-12-03
Category : Science
ISBN : 9781493966356
The aim this volume is to present the methods, challenges, software, and applications of this widespread and yet still evolving and maturing field. Computational Protein Design, the first book with this title, guides readers through computational protein design approaches, software and tailored solutions to specific case-study targets. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Authoritative and cutting-edge, Computational Protein Design aims to ensure successful results in the further study of this vital field.
Author : Barry Robson
Publisher : Elsevier Publishing Company
Page : 722 pages
File Size : 35,46 MB
Release : 1988
Category : Science
ISBN :
The desire to understand protein structure has been given new impetus by the explosive growth of biotechnology and the important role of proteins, natural and modified, in this technology. Protein molecules are machines, and protein engineering is opening up a whole new world of machinery on the molecular scale. This work is a simple, but in many ways detailed, introduction, to current knowledge, techniques, and applications. The volume is essentially in two parts, the first half covering a basic introduction to proteins appropriate at the undergraduate and early postgraduate level, which will prove a valuable teaching aid. The second half is a more advanced guide to concepts and methods, covering a range of aspects not previously collected in one volume. It will serve as a background reader and guide for advanced research study.