Metal ion dependence of phosphorothioate ATP analogues in the Bacillus stearothermophilus tyrosyl-tRNA synthetase reaction.
GA Garcia, RJ Leatherbarrow, F Eckstein, AR Fersht
Biochemistry
(2002)
29
Protection of an unstable reaction intermediate examined with linear free energy relationships in tyrosyl-tRNA synthetase.
TN Wells, AR Fersht
Biochemistry
(2002)
28
Dissection of the effector-binding site and complementation studies of Escherichia coli phosphofructokinase using site-directed mutagenesis.
FT Lau, AR Fersht
Biochemistry
(2002)
28
Energetics of complementary side chain packing in a protein hydrophobic core
JT Kellis, K Nyberg, AR Fersht
Biochemistry
(2002)
28
Kinetic characterization of the recombinant ribonuclease from Bacillus amyloliquefaciens (barnase) and investigation of key residues in catalysis by site-directed mutagenesis
DE Mossakowska, K Nyberg, AR Fersht
Biochemistry
(2002)
28
ASSIGNMENT OF HISTIDINE RESONANCES IN THE H-1-NMR (500 MHZ) SPECTRUM OF SUBTILISIN BPN' USING SITE-DIRECTED MUTAGENESIS
M Bycroft, AR Fersht
Biochemistry
(2002)
27
pH Dependence of chymotrypsin catalysis. Appendix. Substrate binding to dimeric α-chymotrypsin studied by x-ray diffraction and the equilibrium method
AR Fersht, M Renard
Biochemistry
(2002)
13
Reconstruction by site-directed mutagenesis of the transition state for the activation of tyrosine by the tyrosyl-tRNA synthetase: a mobile loop envelopes the transition state in an induced-fit mechanism
AR Fersht, JW Knill-Jones, H Bedouelle, G Winter
Biochemistry
(2002)
27
Relationships between apparent binding energies measured in site-directed mutagenesis experiments and energetics of binding and catalysis.
AR Fersht
Biochemistry
(2002)
27
Investigation of transition-state stabilization by residues histidine-45 and threonine-40 in the tyrosyl-tRNA synthetase
RJ Leatherbarrow, AR Fersht
Biochemistry
(2002)
26
INFLUENCE OF GLOBIN STRUCTURE ON STATE OF HEME .2. ALLOSTERIC TRANSITIONS IN METHEMOGLOBIN
MF Perutz, AR Fersht, SR Simon, GC Roberts
Biochemistry
(2002)
13
Dissection of the structure and activity of the tyrosyl-tRNA synthetase by site-directed mutagenesis
AR Fersht
Biochemistry
(2002)
26
Site-directed mutagenesis reveals transition-state stabilization as a general catalytic mechanism for aminoacyl-tRNA synthetases.
TJ Borgford, TE Gray, NJ Brand, AR Fersht
Biochemistry
(2002)
26
Estimating the contribution of engineered surface electrostatic interactions to protein stability by using double-mutant cycles.
L Serrano, A Horovitz, B Avron, M Bycroft, AR Fersht
Biochemistry
(2002)
29
Structure-activity relationships in engineered proteins: characterization of disruptive deletions in the alpha-ammonium group binding site of tyrosyl-tRNA synthetase.
DM Lowe, G Winter, AR Fersht
Biochemistry
(2002)
26
Structure-activity relationships in engineered proteins: analysis of use of binding energy by linear free energy relationships
AR Fersht, RJ Leatherbarrow, TN Wells
Biochemistry
(2002)
26
Site-directed mutagenesis in the effector site of Escherichia coli phosphofructokinase.
FT Lau, AR Fersht, HW Hellinga, PR Evans
Biochemistry
(2002)
26
Effects of engineering complementary charged residues into the hydrophobic subunit interface of tyrosyl-tRNA synthetase
WHJ Ward, DH Jones, AR Fersht
Biochemistry
(2002)
26
The valyl-tRNA synthetase from Bacillus stearothermophilus has considerable sequence homology with the isoleucyl-tRNA synthetase from Escherichia coli.
TJ Borgford, NJ Brand, TE Gray, AR Fersht
Biochemistry
(2002)
26
Free energy of hydrolysis of tyrosyl adenylate and its binding to wild-type and engineered mutant tyrosyl-tRNA synthetases
TN Wells, CK Ho, AR Fersht
Biochemistry
(2002)
25