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Journal of Molecular Biology|September 20, 2000
Structural stability and domain organization of colicin E1Y V Griko, S D Zakharov, W A CramerBiochimie|November 9, 2002
Insertion intermediates of pore-forming colicins in membrane two-dimensional spaceS D Zakharov, W A CramerPhotosynthesis Research|July 15, 2022
Concerning the enigmatic cytochrome b-559 of oxygenic photosynthesisW A Cramer, S D ZakharovJournal of Molecular Biology|January 7, 2000
Unfolding pathway of the colicin E1 channel protein on a membrane surfaceM Lindeberg, S D Zakharov, W A CramerBiochemistry|September 2, 1999
Kinetic description of structural changes linked to membrane import of the colicin E1 channel proteinS D Zakharov, M Lindeberg, W A CramerJournal of Molecular Biology|April 15, 2000
Energetic basis of structural stability in the molten globule state: alpha-lactalbuminY V GrikoJournal of Protein Chemistry|July 8, 1999
Denaturation versus unfolding: energetic aspects of residual structure in denatured alpha-lactalbuminY V GrikoBiophysical Chemistry|October 13, 2006
Energetics of Ca(2+)-EDTA interactions: calorimetric studyY V GrikoBiophysical Journal|June 1, 1996
Membrane binding of the colicin E1 channel: activity requires an electrostatic interaction of intermediate magnitudeS D Zakharov, J B Heymann, Y L Zhang, et al.Biochemistry|February 27, 1996
Characterization of electrostatic and nonelectrostatic components of protein--membrane binding interactionsJ B Heymann, S D Zakharov, Y L Zhang, et al.Pageof 15