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Mark D Distefano

Showing results (21-30 of 130) with videos related to

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Methods in Enzymology|February 20, 2026
Quantitative analysis of H-Ras localization using confocal microscopyAnjana P Sundaresan, Mary E Brown, Mark D Distefano
Chemical Communications (Cambridge, England)|October 23, 2010
Selective labeling of polypeptides using protein farnesyltransferase via rapid oxime ligationMohammad Rashidian, Jonathan K Dozier, Stepan Lenevich, et al.
Chembiochem : a European Journal of Chemical Biology|November 30, 2006
Selective labeling of proteins by using protein farnesyltransferaseBenjamin P Duckworth, Zhiyuan Zhang, Ayako Hosokawa, et al.
Biochemistry|April 2, 2003
Biochemical and structural studies with prenyl diphosphate analogues provide insights into isoprenoid recognition by protein farnesyl transferaseTammy C Turek-Etienne, Corey L Strickland, Mark D Distefano
Journal of Peptide Science : an Official Publication of the European Peptide Society|April 20, 2010
On-resin conversion of Cys(Acm)-containing peptides to their corresponding Cys(Scm) congenersDaniel G Mullen, Benjamin Weigel, George Barany, et al.
Current Protocols in Protein Science|February 3, 2015
Application of meta- and para-Phenylenediamine as Enhanced Oxime Ligation Catalysts for Protein Labeling, PEGylation, Immobilization, and ReleaseMohammad M Mahmoodi, Mohammad Rashidian, Yi Zhang, et al.
Biochemical Society Transactions|August 29, 2025
Engineering protein prenylation: an emerging tool for selective protein modificationSneha Venkatachalapathy, Caitlin Lichtenfels, Carston R Wagner, et al.
Methods in Enzymology|January 7, 2019
Synthesis and NMR Characterization of the Prenylated Peptide, a-FactorTaysir K Bader, Todd M Rappe, Gianlugi Veglia, et al.
Protein Engineering|August 30, 2002
Exploring routes to stabilize a cationic pyridoxamine in an artificial transaminase: site-directed mutagenesis versus synthetic cofactorsDietmar Häring, Mason R Lees, Leonard J Banaszak, et al.
Current Protocols in Chemical Biology|July 11, 2013
Chemoenzymatic site-specific reversible immobilization and labeling of proteins from crude cellular extract without prior purification using oxime and hydrazine ligationMohammad M Mahmoodi, Mohammad Rashidian, Jonathan K Dozier, et al.
Pageof 13

Showing results (21-30 of 130) with videos related to

Sort By:
Pageof 13
Methods in Enzymology|February 20, 2026
Quantitative analysis of H-Ras localization using confocal microscopyAnjana P Sundaresan, Mary E Brown, Mark D Distefano
Chemical Communications (Cambridge, England)|October 23, 2010
Selective labeling of polypeptides using protein farnesyltransferase via rapid oxime ligationMohammad Rashidian, Jonathan K Dozier, Stepan Lenevich, et al.
Chembiochem : a European Journal of Chemical Biology|November 30, 2006
Selective labeling of proteins by using protein farnesyltransferaseBenjamin P Duckworth, Zhiyuan Zhang, Ayako Hosokawa, et al.
Biochemistry|April 2, 2003
Biochemical and structural studies with prenyl diphosphate analogues provide insights into isoprenoid recognition by protein farnesyl transferaseTammy C Turek-Etienne, Corey L Strickland, Mark D Distefano
Journal of Peptide Science : an Official Publication of the European Peptide Society|April 20, 2010
On-resin conversion of Cys(Acm)-containing peptides to their corresponding Cys(Scm) congenersDaniel G Mullen, Benjamin Weigel, George Barany, et al.
Current Protocols in Protein Science|February 3, 2015
Application of meta- and para-Phenylenediamine as Enhanced Oxime Ligation Catalysts for Protein Labeling, PEGylation, Immobilization, and ReleaseMohammad M Mahmoodi, Mohammad Rashidian, Yi Zhang, et al.
Biochemical Society Transactions|August 29, 2025
Engineering protein prenylation: an emerging tool for selective protein modificationSneha Venkatachalapathy, Caitlin Lichtenfels, Carston R Wagner, et al.
Methods in Enzymology|January 7, 2019
Synthesis and NMR Characterization of the Prenylated Peptide, a-FactorTaysir K Bader, Todd M Rappe, Gianlugi Veglia, et al.
Protein Engineering|August 30, 2002
Exploring routes to stabilize a cationic pyridoxamine in an artificial transaminase: site-directed mutagenesis versus synthetic cofactorsDietmar Häring, Mason R Lees, Leonard J Banaszak, et al.
Current Protocols in Chemical Biology|July 11, 2013
Chemoenzymatic site-specific reversible immobilization and labeling of proteins from crude cellular extract without prior purification using oxime and hydrazine ligationMohammad M Mahmoodi, Mohammad Rashidian, Jonathan K Dozier, et al.
Pageof 13