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Proceedings of the National Academy of Sciences of the United States of America|February 19, 2000
Low dielectric response in enzyme active siteE L Mertz, L I KrishtalikBioelectrochemistry and Bioenergetics (Lausanne, Switzerland)|June 24, 1999
Free energy of charge transfer and intraprotein electric field: method of calculation depends on the charge state of protein at a given structureE L Mertz, L I KrishtalikProteins|June 1, 1997
Electrostatics of proteins: description in terms of two dielectric constants simultaneouslyL I Krishtalik, A M Kuznetsov, E L MertzMolekuliarnaia Biologiia|March 1, 1984
[Multielectron enzymatic reactions. The energy of medium reorganization]L I KrishtalikJournal of Theoretical Biology|September 21, 1985
Conformational mobility of proteins and activation energy of enzymatic charge transfer reactions: an analysis in dielectric formalismL I KrishtalikMolekuliarnaia Biologiia|May 1, 1979
[Globule size and the activation energy of an enzymatic process]L I KrishtalikJournal of Theoretical Biology|January 21, 1985
Effective activation energy of enzymatic and nonenzymatic reactions. Evolution-imposed requirements to enzyme structureL I KrishtalikArchives of Biochemistry and Biophysics|December 1, 1985
The negative cooperativity in cytochrome c oxidase redox reactions: the electrostatic effectL I KrishtalikPageof 3