Rezultati - Richard A. Williamson
- Showing 1 - 14 results of 14
-
1
-
2
High Resolution Structure of the N-terminal Domain of Tissue Inhibitor of Metalloproteinases-2 and Characterization of Its Interaction Site with Matrix Metalloproteinase-3 od Frederick W. Muskett, T.A. Frenkiel, J. Feeney, Robert B. Freedman, Mark D. Carr, Richard A. Williamson
Izdano 1998Artigo -
3
-
4
Conclusive Evidence That the Major T-cell Antigens of theMycobacterium tuberculosis Complex ESAT-6 and CFP-10 Form a Tight, 1:1 Complex and Characterization of the Structural Prope... od Philip S. Renshaw, Parthena Panagiotidou, Adam O. Whelan, Stephen V. Gordon, R. Glyn Hewinson, Richard A. Williamson, Mark D. Carr
Izdano 2002Artigo -
5
-
6
Molecular Features Governing the Stability and Specificity of Functional Complex Formation by Mycobacterium tuberculosis CFP-10/ESAT-6 Family Proteins od Kirsty L. Lightbody, Dariush Ilghari, Lorna C. Waters, Gemma Carey, Mark A. Bailey, Richard A. Williamson, Philip S. Renshaw, Mark D. Carr
Izdano 2008Artigo -
7
-
8
Protein Disulfide-Isomerase Interacts with a Substrate Protein at All Stages along Its Folding Pathway od Alistair G. Irvine, A. Katrine Wallis, Narinder Sanghera, Michelle L. Rowe, Lloyd W. Ruddock, Mark J. Howard, Richard A. Williamson, Claudia A. Blindauer, Robert B. Freedman
Izdano 2014Artigo -
9
Purification of human dihydro-orotate dehydrogenase and its inhibition by A77 1726, the active metabolite of leflunomide od Jean‐Michel Bruneau, Christopher Yea, Sylviane Spinella-Jaegle, Claude Fudali, Katherine Woodward, P.A. Robson, Catherine Sautès‐Fridman, Robert Westwood, Elizabeth Kuo, Richard A. Williamson, E. Ruuth
Izdano 1998Artigo -
10
Molecular Characterization of the Principal Substrate Binding Site of the Ubiquitous Folding Catalyst Protein Disulfide Isomerase od Annamari Pirneskoski, Peter Klappa, Mario Lobell, Richard A. Williamson, Lee J. Byrne, Heli I. Alanen, Kirsi E.H. Salo, Kari I. Kivirikko, Robert B. Freedman, Lloyd W. Ruddock
Izdano 2004Artigo -
11
Alternative Conformations of the x Region of Human Protein Disulphide-Isomerase Modulate Exposure of the Substrate Binding b’ Domain od Van Dat Nguyen, Katrine Wallis, Mark J. Howard, Antti M. Haapalainen, Kirsi E.H. Salo, Mirva J. Saaranen, Ateesh Sidhu, Rik K. Wierenga, Robert B. Freedman, Lloyd W. Ruddock, Richard A. Williamson
Izdano 2008Artigo -
12
‘Something in the way she moves’: The functional significance of flexibility in the multiple roles of protein disulfide isomerase (PDI) od Robert B. Freedman, Jasmine L. Desmond, Lee J. Byrne, Jack W. Heal, Mark J. Howard, Narinder Sanghera, Kelly L. Walker, A. Katrine Wallis, Stephen A. Wells, Richard A. Williamson, Rudolf A. Römer
Izdano 2017Revisão -
13
Structure and function of the complex formed by the tuberculosis virulence factors CFP-10 and ESAT-6 od Philip S. Renshaw, Kirsty L. Lightbody, Václav Veverka, Frederick W. Muskett, Geoff Kelly, Thomas A. Frenkiel, Stephen V. Gordon, R. Glyn Hewinson, B. F. Burke, Jim C. Norman, Richard A. Williamson, Mark D. Carr
Izdano 2005Artigo -
14
Dihydroorotate Dehydrogenase Is a High Affinity Binding Protein for A77 1726 and Mediator of a Range of Biological Effects of the Immunomodulatory Compound od Richard A. Williamson, Christopher Yea, P.A. Robson, Adam P. Curnock, Suresh Jivan Gadher, Anne B. Hambleton, Katherine Woodward, Jean‐Michel Bruneau, P. Hambleton, David S. Moss, Tom Thomson, S Spinella-Jaegle, Philippe Morand, Olivier Courtin, Catherine Sautès‐Fridman, Robert Westwood, Thierry Hercend, Elizabeth Kuo, E. Ruuth
Izdano 1995Artigo
Iskalna orodja:
Sorodne teme
Biology
Biochemistry
Chemistry
Enzyme
Gene
Medicine
Pathology
Biophysics
Genetics
Protein disulfide-isomerase
Crystallography
Isomerase
Protein folding
Binding site
Chaperone (clinical)
Computational biology
Computer science
ESAT-6
Electrical engineering
Endoplasmic reticulum
Engineering
Folding (DSP implementation)
RNA
Stereochemistry
Tuberculosis
Amino acid
Bacteria
Bacterial protein
Cell biology
Dihydroorotate dehydrogenase