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  • Life and Medical Sciences  (1,435)
  • Engineering General  (536)
  • Computational Chemistry and Molecular Modeling  (263)
  • Wiley-Blackwell  (2,234)
  • 1985-1989  (2,234)
  • 1989  (2,234)
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Publisher
  • Wiley-Blackwell  (2,234)
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  • 1985-1989  (2,234)
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  • 1
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 113-124 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: A biological system usually operates under nonstable values of relevant parameters, such as pH, temperature, and ionic strength. The question therefore poses whether such fluctations do affect its relevant processes. Experimental studies on the role of random temperature fluctuations on functional encounters of biostructural polymer molecules, and consequent self-assembly of supramolecular structures, have evidenced an additional, noise-induced order of these structures. This type of effect is the result of nonlinearity in physical systems, and the case of a biosystem is especially interesting. As recent experiments have shown, spinodal decomposition resulting from thermodynamic instability may favor the onset of the supramolecular ordering process. If the random fluctuations of temperature are imposed in such conditions of thermodynamic instability, their ordering effect is further enhanced.
    Additional Material: 7 Ill.
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  • 2
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 167-180 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: There are significant differences between the conditions for chemical and biochemical reactivity. There-fore, models for treating chemical reactions are mostly not suitable for investigating interactions and transformations of bio(macro)molecules. Common features of numerous processes occurring in vivo and in vitro (such as the role of water, ions, and colloids and the significance of Helmholtz energy surfaces) are outlined. Some characteristics of a model suitable for studying van der Waals interactions between biomacromolecules, based on Brownian dynamics and the Lifshitz theory, are described.
    Additional Material: 3 Ill.
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  • 3
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 181-191 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Quantum chemical studies (INDO-RHF-SCF) have been made for the resting state active sites of three closely related heme proteins, cytochrome c peroxidase (CCP), metmyoglobin (MMB), and catalase (CAT). The relative energies of the germane sextet, quartet, and doublet spin-states of each active site were calculated. Both CCP and MMB have similar heme units, consisting of an Fe(III)-protoporphyrin-IX with an imidazole and water as axial ligands. Our calculations show that the larger doming of the porphyrin, greater out-of-planarity of the iron, and the shorter iron-water distance in MMB leads to a sextet ground state with a low-lying quartet state. By contrast, the order of these two states is reversed in CCP, when a neutral imidazole is used as the endogenous axial ligand. An imidazolate ligand, on the other hand, which is an extreme representation of the H-bonding believed to occur in CCP with a nearby aspartate residue, leads to a sextet ground state with a low-lying quartet state. Assuming at least a partially anionic ligand in the intact protein, it follows that the quartet contribution to the ground state properties will be larger in CCP than in MMB. These predictions are consistent with the observed differences in the temperature-dependent magnetic susceptibility for these two proteins. The present results suggest that the experimentally observed Mössbauer resonance spectra of CCP should be reinterpreted in terms of sextet and quartet state contributions to the electric field gradient. Calculations for catalase, which has a single phenolate ligand, result in a sextet ground state with a low-lying quartet state consistent with available Mössbauer and magnetic susceptibility data. Our calculations of the Im- form of CCP show that it more closely resembles CAT. Thus, the effect of proton transfer in CCP can account at least in part for the similarities between CCP and CAT function. Minor differences in ground spin-state and electronic properties calculated for CCP and MMB, however, cannot explain why MMB does not have significant peroxidase activity. The different functions of MMB and CCP must then be due in part to other known differences in their protein environment such as polar residues around the distal ligand binding pocket of CCP, which are absent in MMB, and could help its transformation to an active oxidizing state.
    Additional Material: 5 Tab.
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  • 4
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 223-239 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Recent studies performed in our group on a classical problem of quantum chemistry, with strong implications for theoretical biochemistry and pharmacology, are here summarized. Ab initio descriptions of noncovalent interactions, and in particular H bonds and acid-base couples, have been reexamined using as novel tools the decomposition of ΔE with the inclusion of CP corrections and a further decomposition of the ΔE components into group contributions. Some results of systematic analyses performed over H-bonded dimers are reported, supplemented by a successful application of this approach to a problem of noticeable economic importance (the identification of catalysts for the industrial synthesis of tensioactives). A new feature, presented here for the first time, is the extension of the CP-corrected decomposition of ΔE to bimolecular interactions in solution.
    Additional Material: 8 Ill.
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  • 5
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 297-303 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Two new numerical methods for solving the Schrödinger equation for an N-well periodic potential are presented. One is a diagonalization method based on Floquet-Bloch formalism, and the other is a renormalized Numerov-Cooley method with periodic boundary conditions. The numerical superiority of these methods over the standard diagonalization technique is demonstrated. The methods are illustrated by applications to internal rotation.
    Additional Material: 2 Ill.
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  • 6
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989) 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 395-407 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Ab initio MO-LCAO-SCF calculations using an STO-3G basis set were performed to find the most stable conformations of L-serine phosphate and hydrated L-serine phosphate. The most favorable conformation of L-serine phosphate is found to be one where the bond sequence O—C—C—C is trans and P—O—C—C gauche, and a very short hydrogen bond is formed between an oxygen atom of the phosphate group and a hydrogen atom of the ammonium group.For hydrated L-serine phosphate, a bridge-type hydration in which a water molecule links a phosphate oxygen and an ammonium hydrogen displays particularly low energy. In the four-hydrated L-serine phosphate anion, the most favorable conformation is such a bridged one having a rather extended configuration with regard to the bond sequences O—C—C—C and P—O—C—C.
    Additional Material: 3 Ill.
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  • 8
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 457-457 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989) 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 10
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    International Journal of Quantum Chemistry 35 (1989), S. 495-512 
    ISSN: 0020-7608
    Keywords: Computational Chemistry and Molecular Modeling ; Atomic, Molecular and Optical Physics
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: A many-body diagrammatic perturbation theory of rotation-vibration spectra is elaborated. The present approach is based on two many-body techniques, namely on the second quantization formalism (a rotating-vibrating molecule is formally treated here as a system of interacting vibrons, obeying the Bose-Einstein statistics) and the many-body diagrammatic theory of a model Hamiltonian, initially suggested in the microscopic theory of nuclei and in the last decade very frequently exploited in the accounting for the correlation effects in many electron systems. In the framework of this theory, the rotation-vibration energies are determined as the eigenvalues of a finite-dimensional model eigenproblem.
    Additional Material: 5 Ill.
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