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Fersht

Showing results (331-340 of 593) with videos related to

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Journal of Molecular Biology|March 25, 1982
Kinetic basis of spontaneous mutation. Misinsertion frequencies, proofreading specificities and cost of proofreading by DNA polymerases of Escherichia coliA R Fersht, J W Knill-Jones, W C Tsui
Proceedings of the National Academy of Sciences of the United States of America|August 26, 1998
In vivo activities of GroEL minichaperonesJ Chatellier, F Hill, P A Lund, et al.
Protein Engineering, Design & Selection : PEDS|February 2, 2008
Demonstration by burst-phase analysis of a robust folding intermediate in the FF domainPer Jemth, Christopher M Johnson, Stefano Gianni, et al.
Protein Science : a Publication of the Protein Society|June 5, 2021
NF-κB Rel subunit exchange on a physiological timescaleMatthew Biancalana, Eviatar Natan, Michael J Lenardo, et al.
Nature|June 23, 1988
Contribution of hydrophobic interactions to protein stabilityJ T Kellis, K Nyberg, D Sali, et al.
Biochemistry|June 28, 1994
Generation of a family of protein fragments for structure-folding studies. 2. Kinetics of association of the two chymotrypsin inhibitor-2 fragmentsG de Prat Gay, J Ruiz-Sanz, A R Fersht
Protein Engineering|January 1, 1994
Contribution of a proline residue and a salt bridge to the stability of a type I reverse turn in chymotrypsin inhibitor-2G de Prat Gay, C M Johnson, A R Fersht
Biochemistry|October 8, 1985
Fine structure-activity analysis of mutations at position 51 of tyrosyl-tRNA synthetaseA R Fersht, A J Wilkinson, P Carter, et al.
Nature Biotechnology|March 3, 1999
Oxidative refolding chromatography: folding of the scorpion toxin Cn5M M Altamirano, C García, L D Possani, et al.
Nature Structural Biology|February 27, 1999
Mechanism of folding and assembly of a small tetrameric protein domain from tumor suppressor p53M G Mateu, M M Sánchez Del Pino, A R Fersht
Pageof 60

Showing results (331-340 of 593) with videos related to

Sort By:
Pageof 60
Journal of Molecular Biology|March 25, 1982
Kinetic basis of spontaneous mutation. Misinsertion frequencies, proofreading specificities and cost of proofreading by DNA polymerases of Escherichia coliA R Fersht, J W Knill-Jones, W C Tsui
Proceedings of the National Academy of Sciences of the United States of America|August 26, 1998
In vivo activities of GroEL minichaperonesJ Chatellier, F Hill, P A Lund, et al.
Protein Engineering, Design & Selection : PEDS|February 2, 2008
Demonstration by burst-phase analysis of a robust folding intermediate in the FF domainPer Jemth, Christopher M Johnson, Stefano Gianni, et al.
Protein Science : a Publication of the Protein Society|June 5, 2021
NF-κB Rel subunit exchange on a physiological timescaleMatthew Biancalana, Eviatar Natan, Michael J Lenardo, et al.
Nature|June 23, 1988
Contribution of hydrophobic interactions to protein stabilityJ T Kellis, K Nyberg, D Sali, et al.
Biochemistry|June 28, 1994
Generation of a family of protein fragments for structure-folding studies. 2. Kinetics of association of the two chymotrypsin inhibitor-2 fragmentsG de Prat Gay, J Ruiz-Sanz, A R Fersht
Protein Engineering|January 1, 1994
Contribution of a proline residue and a salt bridge to the stability of a type I reverse turn in chymotrypsin inhibitor-2G de Prat Gay, C M Johnson, A R Fersht
Biochemistry|October 8, 1985
Fine structure-activity analysis of mutations at position 51 of tyrosyl-tRNA synthetaseA R Fersht, A J Wilkinson, P Carter, et al.
Nature Biotechnology|March 3, 1999
Oxidative refolding chromatography: folding of the scorpion toxin Cn5M M Altamirano, C García, L D Possani, et al.
Nature Structural Biology|February 27, 1999
Mechanism of folding and assembly of a small tetrameric protein domain from tumor suppressor p53M G Mateu, M M Sánchez Del Pino, A R Fersht
Pageof 60