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Structural biologic

Nelson et al., 1995] Nelson, M., Humphrey, W., Gursoy, A., Dalke, A., Kale, L., Skeel, R., Schulten, K., and Kufrin, R. MDScope - A visual computing environment for structural biology. Comput. Phys. Commun. 91 (1995) 111-134... [Pg.63]

Kochoyan, M., Leroy, J.L. Hydration and solution structure of nucleic acids. Current Opinion in Structural Biology 5 (1995) 329-333... [Pg.126]

This work has been supported by the U.S. National Science Foundation (grant MCB-9314854) and the U.S. National Institutes of Health s National Center for Research Resources (grant RR08102 to the UNC/Duke Computational Structural Biology Resource). [Pg.129]

Department of Physical Chemistry, and Department of Biological Chemistry, The Fritz Haber Research Center, and the Wolfson Center for Applied Structural Biology, The Hebrew University, Jerusalem 91904, Israel Department de Physique, Department de Chimie, Universite de Montreal, Case Postale 6128, Succursale Centre-Ville, Montreal, Quebec, Canada H3C 3J7 Peptor Ltd., Kiryat Weizmann 16, Rehovot 76326, Israel... [Pg.263]

Brenner S E, C Chothia and T ] P Hubbard 1997. Population Statistics of Protein Structures Lessons from Structural Classifications. Current Opinion in Structural Biology 7 369-376. [Pg.574]

Eddy S R 1996. Hidden Markov Models. Current Opinion in Structural Biology 6 361-365. [Pg.575]

Jernigdji R L and I Bahar 1996. Structure-derived Potentials and Protein Simulations. Current Opinu Structural Biology 6 195-209. [Pg.575]

Rusinko A III, M W Farmen, C G Lambert, P L Brown and S S Young 1999. Analysis of a Larj Structure/Biological Activity Data Set Using Recursive Partitioning. Journal of Chemic Information and Computer Science 39 1017-1026. [Pg.741]

Mixmre models have come up frequently in Bayesian statistical analysis in molecular and structural biology [16,28] as described below, so a description is useful here. Mixture models can be used when simple forms such as the exponential or Dirichlet function alone do not describe the data well. This is usually the case for a multimodal data distribution (as might be evident from a histogram of the data), when clearly a single Gaussian function will not suffice. A mixture is a sum of simple forms for the likelihood ... [Pg.327]

IV. APPLICATIONS IN STRUCTURAL BIOLOGY A. Secondary Structure and Surface Accessibility... [Pg.338]

A common use of statistics in structural biology is as a tool for deriving predictive distributions of strucmral parameters based on sequence. The simplest of these are predictions of secondary structure and side-chain surface accessibility. Various algorithms that can learn from data and then make predictions have been used to predict secondary structure and surface accessibility, including ordinary statistics [79], infonnation theory [80], neural networks [81-86], and Bayesian methods [87-89]. A disadvantage of some neural network methods is that the parameters of the network sometimes have no physical meaning and are difficult to interpret. [Pg.338]

Thomas A. Darden Laboratory of Structural Biology, National Instimte of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, North Carolina... [Pg.523]

Benoit Roux Department of Biochemistry and Structural Biology, Weill Medical College of Cornell University, New York, New York... [Pg.524]

Thomas Simonson Laboratory for Structural Biology and Genomics, Centre National de la Recherche Scientifique, Strasbourg, France... [Pg.524]

Burley, S.K., Boeder, R.G. Biochemistry and structural biology of transcription factor IID. Anna. Rev. Bioehem. [Pg.172]

Eliees, M. (editor) (2000) Structural Biological Materials (Pergamon Press, Oxford). [Pg.458]

Dill, K. A., and Chan, H. S., 1997. From Levinthal to pathways to funnels. Nature Structural Biology 4 10—19. [Pg.208]

Raschke, T. M., and Marqnsee, S., 1997. The kinetic folding intermediate of ribonnclease H resembles the acid molten globule and partially unfolded molecules detected under native conditions. Nature Structural Biology 4 298-304. [Pg.208]

Sifers, R. M., 1995. Defecdve protein folding as a cause of disease. Nature Structural Biology 2 355—367. [Pg.208]

Stein, P. E., and Carrell, R. W., 1995. What do dysfnncUonal serpins tell ns about molecular mobility and disease Nature Structural Biology 2 96-113. [Pg.208]

Hugh.son, F., 1997. Penetrating in.sights into pore formation. Nature Structural Biology 4 89—92. [Pg.325]

Li, H., Lee, S., and Jap, B., 1997. Molecular de.sign of aquaporin-1 water channel as revealed by electron cry.stallography. Nature Structural Biology 4 263-265. [Pg.325]

Parker, M., 1997. More than one way to make a hole. Nature Structural Biology 4 250-253. [Pg.326]

Kranss, N., et al., 1996. Photosystem I at 4 A resolution represents the first structural model of a joint photosynthedc reaction centre and core antenna system. Nature Structural Biology 3 965-973. [Pg.741]


See other pages where Structural biologic is mentioned: [Pg.1625]    [Pg.1634]    [Pg.1646]    [Pg.257]    [Pg.317]    [Pg.318]    [Pg.497]    [Pg.20]    [Pg.552]    [Pg.578]    [Pg.453]    [Pg.196]    [Pg.221]    [Pg.313]    [Pg.314]    [Pg.314]    [Pg.320]    [Pg.344]    [Pg.498]    [Pg.353]    [Pg.459]    [Pg.576]    [Pg.531]    [Pg.708]   
See also in sourсe #XX -- [ Pg.41 ]




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Aspects of Organotins in Structural and Molecular Biology

Binding structural biology

Biological Activity Correlation with Structure

Biological Aspects of Organotins Perspectives in Structural and Molecular Biology

Biological Data Display with Structures

Biological Perspectives and the Problem of Melanin Structure

Biological activities structure

Biological activity and structure of humic substances

Biological activity chemical structure

Biological activity unrelated to structure

Biological and structural significance

Biological community structure

Biological dissipative structures

Biological enzyme modeling active site structure

Biological expression chemical structures

Biological expression structural biology

Biological macromolecules, structural information

Biological membrane structure

Biological membranes their structure

Biological molecule structural characterization

Biological molecules and structures

Biological networks structural complexes

Biological processes structure

Biological pyrimidines, tautomerism and electronic structure

Biological structure data sources

Biological structure probe with

Biological structure-activity relationships

Biological structures

Biological structures

Biological structures Biotechnology

Biological structures determination

Biological structures proof

Biological structures synthesis

Biological structures systems

Biological systems, track structure studies

Cathepsin structural biology

Cellulose, biological degradation structure

Chemical Structures and Biological Activity of Natural Diterpene QMs

Chemical and structural biology

Chemical structure-biological activity relations using pattern recognition

Electronic and Geometric Structures of Metals in Biological Systems

Electronic structure of biological pyrimidines

Electronic structure of biological pyrimidines, tautomerism and

Examples of X-ray Scattering Data from Soft Biological Structures

Fluid mosaic model, biological membrane structure

Geometric structures, metals biological systems

High Throughput Structure - Biology

Imaging of Intermediate-Size Biological Structures Lipid Membranes and Insulin

Implantable medical devices biological structures

Malaria Plasmodium structural biolog

Molecular structure biological data integration

Multi biological structures

Nicotinates biological activity, structure

Occurrence, Structure, and Biological Activity

Occurrence, Structure, and Biological Function

One-Dimensional Silica Structures and Their Applications to the Biological Sciences

Organic chemistry structural biology

PAMAM dendrimers biological structures

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Relationships between Chemical Structure and Biological Activity

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Steps in the correlation of structure with biological action

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Structural Biology

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Structural Biology and Structure-Activity Relationship Studies

Structural Biology in a Nutshell

Structural Biology, by Neil E Jacobsen

Structural analysis of biological macromolecules and lipids by mass spectrometry

Structural analysis, biological networks

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Structural forces in biological macromolecules

Structural information, biological polymers

Structural molecular biology

Structural proteins, functions biological systems

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Structure and Biological Activity

Structure and Biological Function of Vitamin

Structure and Functions of Biological Membranes

Structure and biological activity of heparin

Structure biological aspects

Structure of Biologies

Structure of biological macromolecules

Structure, Properties and Biological Function of Plasma-Sprayed Bioceramic Coatings

Structure-activity relationships biological activities

Structure-activity relationships molecular biology

Structure-selectivity relationships systems biology

Structures and Mechanisms in Biological Systems

Structures with Biological Data

Studies of Relationships between Structure and Biological Activity

Sulfoxides biologically active, structure

Superoxide dismutase structural biology

Tautomerism and electronic structure biological

Tautomerism and electronic structure of biological

The Importance of Hydrogen Bonds in Biological Structure and Function

The Organic Structures of Biology

The Structural Biology of Ubiquitin-Protein Ligases

The structure of biological membranes

Three-Dimensional Biological Structures

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Transmission Electron Microscopy on Soft Biological Structures

Transport mechanisms structural biology

Ubiquitin structural biology

Vectorial transport structural biology

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