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  • Currently displaying 61 - 80 of 166 publications
Author(s)
Publication title
Journal Name
Publication year
Protein engineering and design: From first principles to new technologies
J Clarke, L Regan
Current opinion in structural biology
(2010)
20
What lessons can be learned from studying the folding of homologous proteins?
AA Nickson, J Clarke
Methods (San Diego, Calif.)
(2010)
52
Membrane protein folding makes the transition.
PJ Booth, J Clarke
Proc Natl Acad Sci U S A
(2010)
107
Experimental evidence for a frustrated energy landscape in a three-helix-bundle protein family
BG Wensley, S Batey, FAC Bone, ZM Chan, NR Tumelty, A Steward, LG Kwa, A Borgia, J Clarke
Nature
(2010)
463
Non-Native Interactions Are Critical for Mechanical Strength in PKD Domains
JR Forman, ZT Yew, S Qamar, RN Sandford, E Paci, J Clarke
Structure
(2009)
17
Naturally Occurring Mutations Alter the Stability of Polycystin-1 Polycystic Kidney Disease (PKD) Domains*
L Ma, M Xu, JR Forman, J Clarke, AF Oberhauser
The Journal of biological chemistry
(2009)
284
Different members of a simple three-helix bundle protein family have very different folding rate constants and fold by different mechanisms.
BG Wensley, M Gärtner, WX Choo, S Batey, J Clarke
Journal of molecular biology
(2009)
390
Topology is the principal determinant in the folding of a complex all-alpha Greek key death domain from human FADD.
A Steward, GS McDowell, J Clarke
Journal of Molecular Biology
(2009)
389
Versatile cloning system for construction of multimeric proteins for use in atomic force microscopy.
A Steward, JL Toca-Herrera, J Clarke
Protein Sci
(2009)
11
Spectrin R16: Broad energy barrier or sequential transition states?
KA Scott, J Clarke
Protein Sci
(2009)
14
The effects of disulfide bonds on the denatured state of barnase
J Clarke, AM Hounslow, CJ Bond, AR Fersht, V Daggett
Protein Sci
(2008)
9
Folding of beta‐sandwich proteins: Three‐state transition of a fibronectin type III module
E Cota, J Clarke
Protein Sci
(2008)
9
An effective strategy for the design of proteins with enhanced mechanical stability.
A Borgia, A Steward, J Clarke
Angew Chem Int Ed Engl
(2008)
47
Manipulating the stability of fibronectin type III domains by protein engineering.
SP Ng, KS Billings, LG Randles, J Clarke
Nanotechnology
(2008)
19
Single-molecule studies of protein folding.
A Borgia, PM Williams, J Clarke
Annual Review of Biochemistry
(2008)
77
Folding of a LysM domain: Entropy-enthalpy compensation in the transition state of an ideal two-state folder
AA Nickson, KE Stoll, J Clarke
Journal of molecular biology
(2008)
380
The folding pathway of a single domain in a multidomain protein is not affected by its neighbouring domain.
S Batey, J Clarke
Journal of Molecular Biology
(2008)
378
Characterisation of transition state structures for protein folding using 'high', 'medium' and 'low' {Phi}-values.
CD Geierhaas, X Salvatella, J Clarke, M Vendruscolo
Protein engineering, design & selection : PEDS
(2008)
21
Crosstalk between the Protein Surface and Hydrophobic Core in a Core-swapped Fibronectin Type III Domain
KS Billings, RB Best, TJ Rutherford, J Clarke
Journal of molecular biology
(2007)
375
Plasticity within the obligatory folding nucleus of an immunoglobulin-like domain
I Lappalainen, MG Hurley, J Clarke
Journal of molecular biology
(2007)
375