Electrostatic effects of charge perturbations introduced by metal oxidation in proteins. A theoretical analysis

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Electrostatic effects of charge perturbations introduced by metal oxidation in proteins. A theoretical analysis is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/0022-2836(88)90016-2
P698PubMed publication ID3199443

P50authorMartin KarplusQ903471
P2093author name stringG W Canters
D Bashford
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pH-dependent processes in proteins.Q39829724
Electrostatic effects on modification of charged groups in the active site cleft of subtilisin by protein engineeringQ43737474
1H nuclear magnetic resonance study of the protonation behaviour of the histidine residues and the electron self-exchange reaction of azurin from Alcaligenes denitrificansQ44402325
Electrostatic effects and hydrogen exchange behaviour in proteins. The pH dependence of exchange rates in lysozymeQ46580860
Prediction of electrostatic effects of engineering of protein charges.Q52584895
Computer simulations of the diffusion of a substrate to an active site of an enzyme.Q52594370
CHARMM: A program for macromolecular energy, minimization, and dynamics calculationsQ53340989
Focusing of electric fields in the active site of Cu-Zn superoxide dismutase: effects of ionic strength and amino-acid modificationQ57139076
Rational modification of enzyme catalysis by engineering surface chargeQ58975571
Calculation of electrostatic potentials in an enzyme active siteQ59067672
Hydrogen exchange kinetics of surface peptide amides in bovine pancreatic trypsin inhibitorQ68999832
Interpretation of protein titration curves. Application to lysozymeQ70377302
Calculation of the electric potential in the active site cleft due to alpha-helix dipolesQ72952190
P433issue2
P407language of work or nameEnglishQ1860
P304page(s)507-510
P577publication date1988-09-01
P1433published inJournal of Molecular BiologyQ925779
P1476titleElectrostatic effects of charge perturbations introduced by metal oxidation in proteins. A theoretical analysis
P478volume203

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