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Analytical Biochemistry|August 1, 1997
A new ultrasensitive scanning calorimeterV V Plotnikov, J M Brandts, L N Lin, et al.Biochemistry|February 1, 1983
Isomerization of proline-93 during the unfolding and refolding of ribonuclease AL N Lin, J F BrandtsBiochemistry|December 13, 1988
Separation of the nativelike intermediate from unfolded forms during refolding of ribonuclease AL N Lin, J F BrandtsBiochemistry|September 13, 1983
Evidence showing that a proline-specific endopeptidase has an absolute requirement for a trans peptide bond immediately preceding the active bondL N Lin, J F BrandtsBiochemistry|June 16, 1987
Evidence for the existence of three or more slow phases in the refolding of ribonuclease A and some characteristics of the phasesL N Lin, J F BrandtsBiochemistry|November 5, 1985
Isomer-specific proteolysis of model substrates: influence that the location of the proline residue exerts on cis/trans specificityL N Lin, J F BrandtsBiochemistry|November 20, 1984
Involvement of prolines-114 and -117 in the slow refolding phase of ribonuclease A as determined by isomer-specific proteolysisL N Lin, J F BrandtsBiochemistry|January 9, 1979
Evidence suggesting that some proteolytic enzymes may cleave only the trans form of the peptide bondL N Lin, J F BrandtsBiochemistry|July 24, 1990
Study of strong to ultratight protein interactions using differential scanning calorimetryJ F Brandts, L N LinBiochemistry|February 1, 1983
Determination of cis-trans proline isomerization by trypsin proteolysis. Application to a model pentapeptide and to oxidized ribonuclease AL N Lin, J F BrandtsPageof 5