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C M Dobson

Showing results (241-250 of 271) with videos related to

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Journal of Molecular Biology|August 5, 1986
Molecular dynamics simulations of native and substrate-bound lysozyme. A study of the average structures and atomic fluctuationsC B Post, B R Brooks, M Karplus, et al.
Proteins|December 16, 1998
Dissection of multi-protein complexes using mass spectrometry: subunit interactions in transthyretin and retinol-binding protein complexesA A Rostom, M Sunde, S J Richardson, et al.
Journal of Molecular Biology|May 23, 1997
Structural characterisation and comparison of the native and A-states of equine lysozymeL A Morozova-Roche, C C Arico-Muendel, D T Haynie, et al.
Journal of Structural Biology|August 15, 2000
Amyloid fibril formation and seeding by wild-type human lysozyme and its disease-related mutational variantsL A Morozova-Roche, J Zurdo, A Spencer, et al.
The Biochemical Journal|April 1, 1993
On the role of the C-terminus of alpha-calcitonin-gene-related peptide (alpha CGRP). The structure of des-phenylalaninamide37-alpha CGRP and its interaction with the CGRP receptorJ P O'Connell, S M Kelly, D P Raleigh, et al.
Structure (London, England : 1993)|July 15, 1995
The crystal structure of the catalytic domain of human urokinase-type plasminogen activatorG Spraggon, C Phillips, U K Nowak, et al.
Biophysical Journal|December 7, 2000
Ultrastructural organization of amyloid fibrils by atomic force microscopyA K Chamberlain, C E MacPhee, J Zurdo, et al.
Bio/Technology (Nature Publishing Company)|August 1, 1990
Hen egg white lysozyme expressed in, and secreted from, Aspergillus niger is correctly processed and foldedD B Archer, D J Jeenes, D A MacKenzie, et al.
Biochemistry|December 4, 1998
Structural and dynamical characterization of a biologically active unfolded fibronectin-binding protein from Staphylococcus aureusC J Penkett, C Redfield, J A Jones, et al.
Biochemistry|March 15, 2000
Identification of residues involved in the interaction of Staphylococcus aureus fibronectin-binding protein with the (4)F1(5)F1 module pair of human fibronectin using heteronuclear NMR spectroscopyC J Penkett, C M Dobson, L J Smith, et al.
Pageof 28

Showing results (241-250 of 271) with videos related to

Sort By:
Pageof 28
Journal of Molecular Biology|August 5, 1986
Molecular dynamics simulations of native and substrate-bound lysozyme. A study of the average structures and atomic fluctuationsC B Post, B R Brooks, M Karplus, et al.
Proteins|December 16, 1998
Dissection of multi-protein complexes using mass spectrometry: subunit interactions in transthyretin and retinol-binding protein complexesA A Rostom, M Sunde, S J Richardson, et al.
Journal of Molecular Biology|May 23, 1997
Structural characterisation and comparison of the native and A-states of equine lysozymeL A Morozova-Roche, C C Arico-Muendel, D T Haynie, et al.
Journal of Structural Biology|August 15, 2000
Amyloid fibril formation and seeding by wild-type human lysozyme and its disease-related mutational variantsL A Morozova-Roche, J Zurdo, A Spencer, et al.
The Biochemical Journal|April 1, 1993
On the role of the C-terminus of alpha-calcitonin-gene-related peptide (alpha CGRP). The structure of des-phenylalaninamide37-alpha CGRP and its interaction with the CGRP receptorJ P O'Connell, S M Kelly, D P Raleigh, et al.
Structure (London, England : 1993)|July 15, 1995
The crystal structure of the catalytic domain of human urokinase-type plasminogen activatorG Spraggon, C Phillips, U K Nowak, et al.
Biophysical Journal|December 7, 2000
Ultrastructural organization of amyloid fibrils by atomic force microscopyA K Chamberlain, C E MacPhee, J Zurdo, et al.
Bio/Technology (Nature Publishing Company)|August 1, 1990
Hen egg white lysozyme expressed in, and secreted from, Aspergillus niger is correctly processed and foldedD B Archer, D J Jeenes, D A MacKenzie, et al.
Biochemistry|December 4, 1998
Structural and dynamical characterization of a biologically active unfolded fibronectin-binding protein from Staphylococcus aureusC J Penkett, C Redfield, J A Jones, et al.
Biochemistry|March 15, 2000
Identification of residues involved in the interaction of Staphylococcus aureus fibronectin-binding protein with the (4)F1(5)F1 module pair of human fibronectin using heteronuclear NMR spectroscopyC J Penkett, C M Dobson, L J Smith, et al.
Pageof 28