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Protein systems

Since many systems of interest in chemistry have intrinsic multiple time scales it is important to use integrators that deal efficiently with the multiple time scale problem. Since our multiple time step algorithm, the so-called reversible Reference System Propagator Algorithm (r-RESPA) [17, 24, 18, 26] is time reversible and symplectic, they are very useful in combination with HMC for constant temperature simulations of large protein systems. [Pg.313]

Single-Cell Protein. Systems involving single-cell proteins are often very large throughput, continuous processing operations such as the Pmteen process developed by ICI. These are ideal for air-lift bioreactors of which the pressure cycle fermenter is a special case (50). [Pg.337]

Copper proteins. Systems containing the blue copper centre. J. A. Fee, Struct. Bonding (Berlin),... [Pg.42]

Monooxygenase Protein System Structure, Component Interactions, and Hydroxylation Mechanism Katherine E. Liu and Stephen J. Lippard... [Pg.513]

Non-immune hypersensitivity via direct mediator release or direct activation of plasma-protein systems... [Pg.5]

Hu XA, Wang XL, Rnjak J et al (2010) Biomaterials derived from silk-tropoelastin protein systems. Biomaterials 31 8121-8131... [Pg.166]

Henn, SW Ackers, GK, Molecular Sieve Studies of Interacting Protein Systems, The Journal of Biological Chemistry 244, 465, 1969. [Pg.613]

Fee, J.A. Copper Proteins - Systems Containing the Blue Copper Center. Vol. 23,... [Pg.128]

Mohammed, Z., Hill, S., and Mitchell, J. (2000). Covalent crosslinking in heated protein systems. J. Food Sci. 65, 221-226. [Pg.198]

STUDIES OF THE SOLUBLE METHANE MONOOXYGENASE PROTEIN SYSTEM STRUCTURE, COMPONENT INTERACTIONS, AND HYDROXYLATION MECHANISM... [Pg.266]

The active-site model (and the ONIOM model system) includes Fe, one aspartate and two histidine ligands, a water ligand and selected parts of the substrate (see Figure 2-6). The 2-histidine-1-carboxylate ligand theme is shared by several other non-heme iron enzymes [59], For the protein system, we used two different... [Pg.37]

The ONIOM protein system contains the substrate, methylmalonyl-CoA, bound to the active site, the cofactor (AdoCbl) and all amino acids within a 15-A radius from the cobalt atom. The active-site selection contains a truncated AdoCbl and the imidazole ring of its lower ligand. The QM part was calculated using the BP86 functional [31, 72] because it gives better agreement with experimental Co—C bond energies [73, 74], This a different choice of functional compared to the other studies in the present review. [Pg.44]

As examples. Table 8 records some observations on d—d and charge transfer absorption bands in metal/protein systems. The examination of the spectrum of cobalt carbonic anhydrase (d—d) and of iron conalbumin (charge-transfer) permitted a prediction of the ligands from the protein to the metal. The predictions have now been substantiated by other methods. [Pg.26]

II. Nuclease A131A Local Structure A. The Protein System... [Pg.27]

Edsall, J. T., and McKenzie, H. A. (1983). Water and proteins IE The location and dynamics of water in protein systems and its relation to their stability and properties. Adv. Biophys. 16, 53-184. [Pg.331]

Bajorath, J., D. H. Kitson, G. Fitzgerald, J. Andzelm, J. Kraut, and A. T. Hagler. 1991. Local Density Functional Calculations on a Protein System Folate and Escherichia Coli dihydrofolate reductase. Electron Redistribution on Binding of a Substrate to an Enzyme. PROTEINS 9, 217. [Pg.128]

Baldridge, K., R. Fine, and A. Hagler. 1996. The Effect of Solvent Screening in Quantum Mechanical Calculations in Protein Systems. J. Comp. Chem. 1216. [Pg.129]

The development of novel pharmaceuticals species is tightly related to the mechanism of interactions between drugs and target integral membrane proteins. Solid-state NMR is highly attractive for these biological systems for two main reasons there is no limitation on molecular mass and it enables to study the membrane protein systems in their native forms. [Pg.204]


See other pages where Protein systems is mentioned: [Pg.2991]    [Pg.164]    [Pg.604]    [Pg.200]    [Pg.438]    [Pg.442]    [Pg.470]    [Pg.146]    [Pg.230]    [Pg.435]    [Pg.245]    [Pg.248]    [Pg.6]    [Pg.191]    [Pg.282]    [Pg.290]    [Pg.292]    [Pg.107]    [Pg.258]    [Pg.31]    [Pg.32]    [Pg.377]    [Pg.403]    [Pg.24]    [Pg.78]    [Pg.206]    [Pg.70]   
See also in sourсe #XX -- [ Pg.204 , Pg.205 ]




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AMP-activated protein kinase system

Adsorption from protein + surfactant system

Azurin systems copper protein electron transfer

Bacterial Protein Biomarker Discovery A Focused Approach to Developing Molecular-Based Identification Systems

Biologic systems Nucleic acids Plants Proteins

Biological systems binding proteins

Biological systems protein function

Biological systems protein tyrosine phosphatase

Biological systems proteins

Buffer systems for isotachophoretic separations of serum proteins

Carrier proteins/systems

Complement proteins/system

Complement proteins/system activation pathways

Complement system thioester-containing proteins

Complex systems lipid-protein mixtures and cell membranes

Complex systems protein folding

Controlled release systems proteins

Cornell Net Carbohydrate and Protein System

Drug delivery systems protein

Drug/protein release systems

Dutch protein system

Dynamics protein-water systems

EIF-2a protein kinase system

Electron transport system high-protein concentrations

Eukaryotic systems, protein structure-function

Eukaryotic systems, protein structure-function studies

Expert Protein Analysis System

Expert Protein Analysis System ExPASy)

Expression of recombinant proteins in animal cell culture systems

Expression systems protein-tagging sequence

First-Generation CIEF-RPLC-MS System for Proteins

Flowing systems, protein adsorption

Food systems, structure protein assemblies

French protein system

G proteins, second messenger systems

G-protein-coupled adenylate cyclase-cAMP system

G-proteins systems

German protein system

Globular proteins immune system

Glutathione system protein

Heat-shock protein system

Heat-shock protein system receptors

Heme proteins peptide systems

Heterogeneous Systems Membrane Proteins

Heterogeneous systems dynamically, membrane proteins

Heterologous expression systems transport proteins

Immune system proteins

Iron-sulfur proteins oriented systems

Ligand-protein systems

Lipids protein systems

Membrane lipid bilayers reconstituted protein systems

Membrane-protein systems/interactions

Metabolisable Protein System

Mitogen-activated protein kinase system

Model protein-cell system

Model system, protein interactions

Modeling Nicotinamide Coenzyme Function in Protein and Peptide Systems

Modeling Thiamine Catalysis in Protein and Peptide Systems

Multidimensional microfluidic systems, for protein and

Multidimensional microfluidic systems, for protein and peptide separations

Multidrug-resistance associated protein system

Multiple protein systems

Nuclear magnetic resonance protein system

Nuclease protein system

Nucleic Acid-Protein Systems

Nucleic acid-protein systems, relaxation

Other Proteins of the Hemostatic System

Peroxisomes protein import, permeabilized cell system

Plasma protein buffer system

Products of the Mitochondrial Protein-Synthesizing System

Prokaryotic systems, protein structure-function

Prokaryotic systems, protein structure-function studies

Protective proteins, functions biological systems

Protein aqueous systems

Protein biosynthetic system

Protein biosynthetic system amino acids

Protein biosynthetic system approaches

Protein biosynthetic system incorporations

Protein biosynthetic system variety

Protein buffer systems

Protein degradation systems

Protein degradation systems defects

Protein disulfide-isomerase systems

Protein dye systems

Protein expression systemic analysis

Protein expression systems, rapid

Protein expression/recombinant systems

Protein flowing systems

Protein identification system

Protein in food systems

Protein kinases, second messenger systems

Protein living systems

Protein partitioning in two-phase aqueous polymer systems

Protein purification systems

Protein reaction system

Protein reservoir system

Protein separation systems

Protein synthesis cell-free systems

Protein synthesis fractionated cell-free systems

Protein synthesis in cell-free systems

Protein-membrane systems

Protein-solvent system

Protein/excipient system

Protein/hydrophobic polymer matrix system

Protein/polymer matrix systems, applications

Proteins advanced drug delivery systems

Proteins colloidal systems

Proteins delivery systems

Proteins detection systems

Proteins expression system for

Proteins of the complement system

Proteins, controlled release, polymer systems

Recombinant protein cell-free system

Redox proteins carbon nanotube-hybrid systems

Relaxation protein-water systems

Rhodopsin reconstituted protein system

Selection of an Ion-Exchange-Reversed-Phase Separation System for Protein-Level Separations

Single protein system, adsorption

Skill 12.1o-Recognize that inorganic and organic compounds (e.g., water, salt, carbohydrates, lipids, proteins, nucleic acids) are essential to processes within living systems

Soluble methane monooxygenase protein system

Some Specialized Proteins of the Immune System

Spin-system analysis, proteins

Structural proteins, functions biological systems

Studies of the Soluble Methane Monooxygenase Protein System

Systemic Delivery of Peptides and Proteins

Systemic wound response protein

The Cell-Free Protein Expression Systems RTS

The UK metabolisable protein system

The eIF-2a protein kinase system

The inositol polyphosphate-diacylglycerol-protein kinase C system

Therapeutic proteins, wound healing delivery systems

Transitions model protein-water systems

Ubiquitin protein degradation system

Vesicle/protein system, mixture

Viruses recombinant protein expression system

Water protein systems

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