Showing results (1-10 of 24) with videos related to
Sort By:
Pageof 3
Bioorganic & Medicinal Chemistry|September 13, 2001
Specific host-guest interactions in a protein-based artificial transaminaseD Häring, M D DistefanoBioconjugate Chemistry|May 17, 2001
Enzymes by design: chemogenetic assembly of transamination active sites containing lysine residues for covalent catalysisD Häring, M D DistefanoBiochemical and Biophysical Research Communications|June 18, 1997
Photoaffinity labeling of yeast farnesyl protein transferase and enzymatic synthesis of a Ras protein incorporating a photoactive isoprenoidR L Edelstein, M D DistefanoProceedings of the National Academy of Sciences of the United States of America|February 15, 1993
Energetics of cooperative binding of oligonucleotides with discrete dimerization domains to DNA by triple helix formationM D Distefano, P B DervanBioorganic & Medicinal Chemistry Letters|January 1, 1999
Effects of metal ions on the rates and enantioselectivities of reactions catalyzed by a series of semisynthetic transaminases created by site directed mutagenesisD Qi, H Kuang, M D DistefanoCurrent Opinion in Chemical Biology|December 12, 2001
Enzyme design by chemical modification of protein scaffoldsC M Tann, D Qi, M D DistefanoBiochemistry|April 13, 2001
Stereochemical analysis of the reaction catalyzed by human protein geranylgeranyl transferaseV A Clausen, R L Edelstein, M D DistefanoBiochemistry|March 20, 1990
Active site of mercuric reductase resides at the subunit interface and requires Cys135 and Cys140 from one subunit and Cys558 and Cys559 from the adjacent subunit: evidence from in vivo and in vitro heterodimer formationM D Distefano, M J Moore, C T WalshBiochemistry|February 7, 1989
Mutagenesis of the redox-active disulfide in mercuric ion reductase: catalysis by mutant enzymes restricted to flavin redox chemistryM D Distefano, K G Au, C T WalshCurrent Opinion in Structural Biology|September 8, 1998
The design of protein-based catalysts using semisynthetic methodsM D Distefano, H Kuang, D Qi, et al.Pageof 3