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Solute structure

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

The second application of the CFTI approach described here involves calculations of the free energy differences between conformers of the linear form of the opioid pentapeptide DPDPE in aqueous solution [9, 10]. DPDPE (Tyr-D-Pen-Gly-Phe-D-Pen, where D-Pen is the D isomer of /3,/3-dimethylcysteine) and other opioids are an interesting class of biologically active peptides which exhibit a strong correlation between conformation and affinity and selectivity for different receptors. The cyclic form of DPDPE contains a disulfide bond constraint, and is a highly specific S opioid [llj. Our simulations provide information on the cost of pre-organizing the linear peptide from its stable solution structure to a cyclic-like precursor for disulfide bond formation. Such... [Pg.164]

R. A. Home, ed.. Water andMqueous Solutions Structure, Thermodynamics, and Transport Processes, Wiley-Interscience, New York, 1972. [Pg.218]

Fig. 7.7. Solid-solution structures. In interstitial solutions small atoms fit into the spaces between large atoms. In substitutional solutions similarly sized atoms replace one another. If A-A, A-B and B-B bonds hove the some strength then this replacement is random. But unequal bond strengths con give clustering or ordering. Fig. 7.7. Solid-solution structures. In interstitial solutions small atoms fit into the spaces between large atoms. In substitutional solutions similarly sized atoms replace one another. If A-A, A-B and B-B bonds hove the some strength then this replacement is random. But unequal bond strengths con give clustering or ordering.
MI Sutcliffe, CM Dobson, RE Oswald. Solution structure of neuronal bungarotoxm determined by two-dimensional NMR spectroscopy Calculation of tertiary structure using systematic homologous model building, dynamical simulated annealing, and restrained molecular dynamics. Biochemistry 31 2962-2970, 1992. [Pg.305]

MV Botuyan, A Toy-Palmer, J Chung, RC Blake II, P Beroza, DA Case. NMR solution structure of Cu(I) rusticyanm from Thiobacillus feiTooxidans Structural basis of the extreme acid stability and redox potential. J Mol Biol 263 752-767, 1996. [Pg.414]

Ikura, M., et al. Solution structure of a calmodulin-target peptide complex by multidimensional NMR. Science 256 632-638, 1992. [Pg.119]

Billeter, M., et al. Determination of the nuclear magnetic resonance solution structure of an Antennapedia home-odomain DNA complex. /. Mol. Biol. 234 1084-1097, 1993. [Pg.173]

Lee, M.S., et al. Three-dimensional solution structure of a single zinc finger DNA-binding domain. Science 245 635-637, 1989. [Pg.203]

Smith, S.O., et al. Crystal versus solution structures of enzymes NMR spectroscopy of a crystalline serine protease. Science 244 961-964, 1989. [Pg.221]

Morton, C.J., et al. Solution structure and peptide binding of the SH3 domain from human Fyn. Structure 4 705-714, 1996. [Pg.281]

Hie solution structures of cyano-Gilman aiprates and lower-ordet cyanoaiprates have been studied by ctyoscopic meastirenients in THF [141]. Hie results of tliis study have in several cases sliown ways to obtain useful single crystals of several higher- and lowet-order cyanoaiprates and consequently to determine tlieir structures in tlie solid state. 11 appears tlial a number of tliese cyanoaiprales retain tlieir observed solid-slale sliuctute when dissolved in THF. [Pg.37]

Wild C, Oas T, McDanal C, Bolognesi D, Matthews T (1992) A synthetic peptide inhibitor of human immunodeficiency virus replication correlation between solution structure and viral inhibition, Proc Natl Acad Sci USA 89 10537-10541... [Pg.202]

B. Polymetallic Systems Valence Delocalization Considerations on the Reduction Potentird Solution Structure... [Pg.251]

Contact shifts give information on the electronic structure of the iron atoms, particularly on the valence distribution and on the magnetic coupling within polymetallic systems. The magnetic coupling scheme, which is considered later, fully accounts for the variety of observed hyperfine shifts and the temperature dependence. Thus, through the analysis of the hyperfine shifts, NMR provides detailed information on the metal site(s) of iron-sulfur proteins, and, thanks to the progress in NMR spectroscopy, also the solution structure 23, 24 ). [Pg.252]

The solution structure determination of iron-sulfur proteins is feasible in most cases. To achieve this result, it is necessary to have enough structural constraints to make it possible to obtain a family of conformers with similar folding from many randomly generated structures (95). [Pg.266]

Table III reports structural statistics relative to the solution structures of iron-sulfur proteins available from the Protein Data Bank (118). The lowest percentage of residue assignment occurs for oxidized Synechococcus elongatus Fd (119). The highest percentage of proton assignment is instead obtained for oxidized E. halophila HiPIP, with a value as high as 95% (120). A close figure was also obtained for the reduced protein (94%). In the latter case, such high values are obtained also thanks to the availability of labeled... Table III reports structural statistics relative to the solution structures of iron-sulfur proteins available from the Protein Data Bank (118). The lowest percentage of residue assignment occurs for oxidized Synechococcus elongatus Fd (119). The highest percentage of proton assignment is instead obtained for oxidized E. halophila HiPIP, with a value as high as 95% (120). A close figure was also obtained for the reduced protein (94%). In the latter case, such high values are obtained also thanks to the availability of labeled...
NMR Assignments, Structural Constraints, and Structural Parameters for the Available NMR Solution Structures of Iron-Sulfur Proteins"- ... [Pg.272]

While crystal structures of rubredoxins have been known since 1970 (for a full review on rubredoxins in the crystalline state, see Ref. (15)), only recently have both crystal and solution structures of Dx been reported (16, 17) (Fig. 3). The protein can be described as a 2-fold symmetric dimer, firmly hydrogen-bonded and folded as an incomplete /3-barrel with the two iron centers placed on opposite poles of the molecule, 16 A apart. Superimposition of Dx and Rd structures reveal that while some structural features are shared between these two proteins, significant differences in the metal environment and water structure exist. They can account for the spectroscopic differences described earlier. [Pg.365]


See other pages where Solute structure is mentioned: [Pg.55]    [Pg.55]    [Pg.254]    [Pg.265]    [Pg.405]    [Pg.160]    [Pg.181]    [Pg.281]    [Pg.436]    [Pg.563]    [Pg.708]    [Pg.161]    [Pg.161]    [Pg.167]    [Pg.209]    [Pg.460]    [Pg.465]    [Pg.431]    [Pg.265]    [Pg.349]    [Pg.266]    [Pg.266]    [Pg.266]    [Pg.267]    [Pg.268]    [Pg.271]    [Pg.366]   
See also in sourсe #XX -- [ Pg.28 ]

See also in sourсe #XX -- [ Pg.22 ]




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Ab initio structure solution

Adlayer structures, electrode/solution interface

Aluminum solute complexes, structure

Anion structures, electrode/solution interface

Approximate solution for the structure of a detonation

Aqueous electrolyte solutions structure

Aqueous solutions molecular structures

Automation structure solution

Average solution structure

Average solution structure 262 Subject

Blue copper proteins solution structures

Chain structure solution self-assembly

Colloidal solution structure

Contrast structures solution stability

Contrast structures spike-type solutions

Contrast structures step-type solutions

Cross-interaction constants and transition-state structure in solution

Crystal Structures of Some Compounds and Solid Solutions

Crystal structure solution

Crystal structure solution/refinement

Crystallography structure solution

Data Reduction, Structure Solution and Refinement

Dendrimer solution structure

Direct methods of structure solution

Disordered phases, structural solution composition

Dynamic structure factor polymer solution

Dynamic structure factors dilute solutions

Dynamic structure factors solutions

Dynamic structures in solution

Effective charge and transition-state structure in solution

Electrode-solution interface, structural

Electrode-solution interface, structural control

Electrolytic solutions structure

Electronic structure and chemical reaction in solution

Electronic structure solute diffusion

Elucidating Structure-Function Relationships in Bulky DNA Lesions From Solution Structures to Polymerases

Enzyme structure in solution

Evidence that solution and crystal structures are similar

FK506-binding proteins solution structure

Ferricytochrome solution structure

Ferrocytochrome solution structure

How Much Structural Change Is Induced by the Solute

Initial Structure solution

Insulin solution structure

Interphase electrode-solution structure

Ion Luminescence as a Probe of Solution Structure

Ionic liquids liquid-solute structural investigations

Iron-sulfur proteins solution structure

Isotope effect on solvation Helmholtz energy and structural aspects of aqueous solutions

Lower critical solution temperature structure

Malate dehydrogenase solution structure

Membrane structure casting solution

Metal-solution interphase water structure

Molecularly imprinted polymers monomer-template solution structures

Monomer-template solution structures

NLO Responses of Anils in Solution Structure-Property Relationships

NMR Solution Structure

Neutron powder diffraction structure solution from data

Nuclear magnetic resonance solution structure

Nuclease solution structure

One-state structural solutions

Optimized structure and valence-electron density of tetragonal ceria-zirconia solid solutions

Ordered Structure in Solution

Osmotic pressure and structure of the solution with overlap

Outline of the electronic-structure solution in a one-dimensional world

Piguet and Carlos F.G.C. Geraldes Paramagnetic NMR lanthanide induced shifts for extracting solution structures

Polymer solutions structure

Polypyrrole solution interface, structure

Powder diffraction software structure solution

Powder diffraction structure solution from data

Powder, structure solution from

Proteins large, solution structures

Proteins solution versus crystal structures

Proteins solutions (structure

Raman spectra and solution structure

Single crystal software structure solution

Sodium chloride, crystal structure water solution

Solid Solutions and Structure Elements

Solute Structure Determination

Solute structural effects

Solute structure function scattering experiments

Solutes at Interfaces Structure and Thermodynamics

Solutes, column-packing structure

Solution Structure of Biomolecules

Solution Structures Deduced from LIS Data

Solution coordination structural considerations

Solution processing clay/polymer composites structures

Solution space, structure

Solution structural characterization

Solution structural studies

Solution structure determination

Solution structure factor

Solution structure generation algorithm

Solution structure generation algorithm networks

Solution structure of proteins and nucleic acids

Solution structure refinements

Solution structures, chromium complexes

Solution systems model structure

Solution-phase structure

Solution-state NMR determination of polymer end-groups, substituents and minor structures

Solutions lithium enolate structure

Solutions structure formation

Stability of Protein Structure in Aqueous Solution

Structural Characterization in Solution by NMR

Structural Data in Solution

Structural solutions

Structural solutions

Structure Determination of Silyl Cations in Solution

Structure Solution Software Specifically for Powder Diffraction

Structure and Dynamics in Solution

Structure and properties of polyelectrolyte chains in solution

Structure and properties of polymers in concentrated solution

Structure and properties of polymers in dilute solution

Structure and properties of polymers in semidilute solution

Structure deformations, solute-solvent

Structure deformations, solute-solvent interaction

Structure in an Aqueous Solution

Structure in aqueous solution

Structure in solution

Structure of Caldesmon in Solution

Structure of Complexes in Solution

Structure of Complexes in Solution Derived from X-Ray Diffraction

Structure of Hyaluronan in Solution

Structure of Ice, Solutions and Dispersions

Structure of adducts in solution

Structure of adsorbed films on dilute solutions

Structure of aqueous electrolyte solutions

Structure of aqueous solution

Structure of charged polymer solutions

Structure of linear polyelectrolyte chains in dilute solution

Structure of solutions

Structure of the Casting Solution

Structure of the Water Solution

Structure solid solutions

Structure solution

Structure solution direct-space

Structure solution from first principle

Structure solution from powder data

Structure solution process

Structure solution software

Structure solution, Patterson heavy-atom method

Structure solution, direct method

Structures Solutions and Refinements

Structures in Surfactant Solutions Association Colloids

Studies of the Monomer-Template Solution Structures

Supercritical solute, molecular structure

The Chalcopyrite Structure and Solid Solution

The Intercommunication of Macromolecular Coil in Solution Structure and Characteristics

The Intercommunication of Structures in Diluted Solution and Polymers Condensed State

The Relation of Surfactant Chemical Structure to Foaming in Aqueous Solution

The Structure of a Dressed Macroion in Solution

The Three-Dimensional Structure of Protein Molecules in Aqueous Solution

The structure of block copolymer melts, solids, solutions and blends

The structure of macromolecules in dilute solution

The structure of macromolecules in solution

Three-dimensional molecular structures in solution

Transition state structure, in solution

Tridimensional structures of paramagnetic proteins in solution

Vanadium compounds solution structures

Water Structure in Aqueous Solutions

Water structure and cavity formation in concentrated sugar solutions

Water structure electrolyte solutions

Water structure in presence of solutes

Worm-like micelles solution structure

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