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Receptor|January 1, 1995
The high resolution solution structure of the insulin monomer determined by NMRN C Kaarsholm, S LudvigsenThe Biochemical Journal|May 1, 1984
Subsite differences between the active centres of papaya peptidase A and papain as revealed by affinity chromatography. Purification of papaya peptidase A by ionic-strength-dependent affinity adsorption on an immobilized peptide inhibitor of papainP Schack, N C KaarsholmActa Chemica Scandinavica. Series B: Organic Chemistry and Biochemistry|January 1, 1983
Characterization of papaya peptidase A as an enzyme of extreme basicityN C Kaarsholm, P SchackBiochemistry|September 29, 2000
Structural effects of protein lipidation as revealed by LysB29-myristoyl, des(B30) insulinH B Olsen, N C KaarsholmBiochemistry|February 10, 1987
Effects of calcium ion on ternary complexes formed between 4-(2-pyridylazo)resorcinol and the two-zinc insulin hexamerN C Kaarsholm, M F DunnArchives of Biochemistry and Biophysics|December 1, 1990
Ionization behavior of native and mutant insulins: pK perturbation of B13-Glu in aggregated speciesN C Kaarsholm, S Havelund, P HougaardBiochemistry|July 9, 1996
Solution structure of an engineered insulin monomer at neutral pHH B Olsen, S Ludvigsen, N C KaarsholmJournal of Molecular Biology|June 24, 1998
A structural switch in a mutant insulin exposes key residues for receptor bindingS Ludvigsen, H B Olsen, N C KaarsholmJournal of Molecular Biology|November 14, 1998
The relationship between insulin bioactivity and structure in the NH2-terminal A-chain helixH B Olsen, S Ludvigsen, N C KaarsholmBiochemistry|May 16, 1989
Comparison of solution structural flexibility and zinc binding domains for insulin, proinsulin, and miniproinsulinN C Kaarsholm, H C Ko, M F DunnPageof 4