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Current Opinion in Structural Biology
|
December 26, 2012
Take home lessons from studies of related proteins
Adrian A Nickson, Beth G Wensley, Jane Clarke
Journal of Molecular Biology
|
May 19, 2009
Different members of a simple three-helix bundle protein family have very different folding rate constants and fold by different mechanisms
Beth G Wensley, Martina Gärtner, Wan Xian Choo, et al.
Journal of Molecular Biology
|
August 25, 2012
Protein folding: adding a nucleus to guide helix docking reduces landscape roughness
Beth G Wensley, Lee Gyan Kwa, Sarah L Shammas, et al.
The FEBS Journal
|
December 18, 2012
Understanding pathogenic single-nucleotide polymorphisms in multidomain proteins--studies of isolated domains are not enough
Lucy G Randles, Gwen J S Dawes, Beth G Wensley, et al.
Journal of Molecular Biology
|
December 31, 2013
The folding of a family of three-helix bundle proteins: spectrin R15 has a robust folding nucleus, unlike its homologous neighbours
Lee Gyan Kwa, Beth G Wensley, Crispin G Alexander, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
June 20, 2012
Separating the effects of internal friction and transition state energy to explain the slow, frustrated folding of spectrin domains
Beth G Wensley, Lee Gyan Kwa, Sarah L Shammas, et al.
Nature Communications
|
November 15, 2012
Localizing internal friction along the reaction coordinate of protein folding by combining ensemble and single-molecule fluorescence spectroscopy
Alessandro Borgia, Beth G Wensley, Andrea Soranno, et al.
Nature
|
February 5, 2010
Experimental evidence for a frustrated energy landscape in a three-helix-bundle protein family
Beth G Wensley, Sarah Batey, Fleur A C Bone, et al.
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Search research articles
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Showing results (1-10 of 8) with videos related to
Sort By:
Page
of 1
Current Opinion in Structural Biology
|
December 26, 2012
Take home lessons from studies of related proteins
Adrian A Nickson, Beth G Wensley, Jane Clarke
Journal of Molecular Biology
|
May 19, 2009
Different members of a simple three-helix bundle protein family have very different folding rate constants and fold by different mechanisms
Beth G Wensley, Martina Gärtner, Wan Xian Choo, et al.
Journal of Molecular Biology
|
August 25, 2012
Protein folding: adding a nucleus to guide helix docking reduces landscape roughness
Beth G Wensley, Lee Gyan Kwa, Sarah L Shammas, et al.
The FEBS Journal
|
December 18, 2012
Understanding pathogenic single-nucleotide polymorphisms in multidomain proteins--studies of isolated domains are not enough
Lucy G Randles, Gwen J S Dawes, Beth G Wensley, et al.
Journal of Molecular Biology
|
December 31, 2013
The folding of a family of three-helix bundle proteins: spectrin R15 has a robust folding nucleus, unlike its homologous neighbours
Lee Gyan Kwa, Beth G Wensley, Crispin G Alexander, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
June 20, 2012
Separating the effects of internal friction and transition state energy to explain the slow, frustrated folding of spectrin domains
Beth G Wensley, Lee Gyan Kwa, Sarah L Shammas, et al.
Nature Communications
|
November 15, 2012
Localizing internal friction along the reaction coordinate of protein folding by combining ensemble and single-molecule fluorescence spectroscopy
Alessandro Borgia, Beth G Wensley, Andrea Soranno, et al.
Nature
|
February 5, 2010
Experimental evidence for a frustrated energy landscape in a three-helix-bundle protein family
Beth G Wensley, Sarah Batey, Fleur A C Bone, et al.
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of 1