Research Catalog
Protein structure by distance analysis
- Title
- Protein structure by distance analysis / edited by H. Bohr and S. Brunak.
- Publication
- Amsterdam ; Washington, DC : IOS Press ; Tokyo : Ohmsha, 1994.
Items in the Library & Off-site
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1 Item
Status | Format | Access | Call Number | Item Location |
---|---|---|---|---|
Text | Use in library | QP551 .P769 1994 | Off-site |
Details
- Additional Authors
- Description
- xxiv, 335 pages : illustrations (some color); 25 cm
- Subject
- Genre/Form
- Congress
- proceedings (reports)
- Conference papers and proceedings
- Conference papers and proceedings.
- Actes de congrès.
- Note
- "This book grew out of the symposium 'Distance based approaches to protein structure determination' held at the Center for Biological Sequence Analysis, The Technical University of Denmark, in Lyngby, November 23-26, 1993"--p. xi.
- Bibliography (note)
- Includes bibliographical references and index.
- Contents
- Experimental approaches to distance-matrix determination in proteins and nucleic acids -- Structures from X-ray crystallography illustrated by proteins with prosthetic groups / Sine Larsen, Anders Kadziola, Jens F.W. Petersen -- Function and three-dimensional structure of proteins using nuclear magnetic resonance spectroscopy / Flemming M. Poulsen -- Experimental aspects of ultra-violet and circular dichroism methods for protein folding / Hans E.M. Christensen [and others] -- Theoretical distance-based approaches to protein structure prediction.
- Probing protein structure by solvent perturbation of NMR spectra: III. combination of experiment and theory / Gennaro Esposito [and others] -- Comparative protein modeling by satisfaction of spatial restraints / Andrej Sali, Tom Blundell -- Recurrent neural networks for protein distance matrix prediction / Martin Reczko, Henrik Bohr -- Growth of domains in distance geometry through protein folding / Henrik Bohr, Jin Wang, Peter Wolynes -- Distance-based energy function methods for protein structure -- Predictive power of mean force pair potentials / Manfred J. Sippl, Markus Jaritz.
- Optimized energy functions for tertiary structure prediction and recognition / Richard A. Goldstein, Zan A. Luthey-Schulten, Peter G. Wolynes -- Prediction of 3D structures of globular proteins based on self-consistent molecular field theory / Alexei V. Finkelstein [and others] -- Potential function that identifies correct protein folds / Gordon M. Crippen, Vladimir N. Maiorov -- Genetic algorithm codings used in protein structure prediction by energy minimization / Frank Herrmann.
- Secondary and supersecondary structures, folds and conformations in proteins -- Super-secondary structures in proteins / Alexander V. Efimov -- Design of model fast-folding proteins / Eugene I. Shakhnovich -- Modeling and predicting protein structure using distance geometry / William R. Taylor, Andras Aszodi -- Modeling secondardy structure formation by distance geometry techniques / Andras Aszodi, William R. Taylor -- Library of signature pentapeptides for the protein data bank / Ikuo Uchiyama, Atsushi Ogiwara, Minoru Kanehisa.
- Glycosylation and protein conformation / Jan E. Hansen [and others] -- Database and neural network-based predictions of protein structure -- 1D secondary structure prediction through evolutionary profiles / Burkhard Rost, Chris Sander -- Fold-class prediction by neural network / Martin Reczko [and others] -- Distance-based approaches to protein structure-function analysis / Michael N. Liebman -- Quantification of secondary structure prediction improvement using distantly related proteins / Jonathan M. Levin [and others].
- Delineating the mainchain topology of four-helix bundle proteins using the genetic algorithm and knowledge based on the amino acid sequence alone / Patrick Argos, Thomas Dandekar -- Correlation between protein secondary structure and the mRNA nucleotide sequence / Soren Brunak, Jacob Engelbrecht, Can Kesmir.
- ISBN
- 9051991614
- 9789051991611
- 4274022633
- 9784274022630
- LCCN
- 94075946
- OCLC
- ocm32111805
- 32111805
- SCSB-14398471
- Owning Institutions
- Princeton University Library