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Journal of Biomolecular NMR
|
September 29, 2009
Methyl groups as probes of supra-molecular structure, dynamics and function
Amy M Ruschak, Lewis E Kay
Nature
|
August 10, 2012
Structural biology: Dynamic binding
Andrew J Baldwin, Lewis E Kay
Nature Chemical Biology
|
October 21, 2009
NMR spectroscopy brings invisible protein states into focus
Andrew J Baldwin, Lewis E Kay
Journal of the American Chemical Society
|
May 7, 2011
Determining valine side-chain rotamer conformations in proteins from methyl 13C chemical shifts: application to the 360 kDa half-proteasome
D Flemming Hansen, Lewis E Kay
Journal of Biomolecular NMR
|
April 6, 2012
Measurement of the signs of methyl 13C chemical shift differences between interconverting ground and excited protein states by R(1ρ): an application to αB-crystallin
Andrew J Baldwin, Lewis E Kay
Methods in Enzymology
|
April 6, 2005
Solution structure and dynamics of integral membrane proteins by NMR: a case study involving the enzyme PagP
Peter M Hwang, Lewis E Kay
Cell
|
February 5, 2021
NMR spectroscopy captures the essential role of dynamics in regulating biomolecular function
T Reid Alderson, Lewis E Kay
Accounts of Chemical Research
|
February 16, 2008
Probing invisible, low-populated States of protein molecules by relaxation dispersion NMR spectroscopy: an application to protein folding
Dmitry M Korzhnev, Lewis E Kay
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
May 1, 2026
A <sup>13</sup>C<sup>β</sup> CEST experiment with improved sensitivity for the characterization of protein excited states
Jeffrey P Bonin, Lewis E Kay
Current Opinion in Structural Biology
|
December 14, 2019
Unveiling invisible protein states with NMR spectroscopy
T Reid Alderson, Lewis E Kay
Page
of 34
Search research articles
Search
Showing results (51-60 of 336) with videos related to
Sort By:
Page
of 34
Journal of Biomolecular NMR
|
September 29, 2009
Methyl groups as probes of supra-molecular structure, dynamics and function
Amy M Ruschak, Lewis E Kay
Nature
|
August 10, 2012
Structural biology: Dynamic binding
Andrew J Baldwin, Lewis E Kay
Nature Chemical Biology
|
October 21, 2009
NMR spectroscopy brings invisible protein states into focus
Andrew J Baldwin, Lewis E Kay
Journal of the American Chemical Society
|
May 7, 2011
Determining valine side-chain rotamer conformations in proteins from methyl 13C chemical shifts: application to the 360 kDa half-proteasome
D Flemming Hansen, Lewis E Kay
Journal of Biomolecular NMR
|
April 6, 2012
Measurement of the signs of methyl 13C chemical shift differences between interconverting ground and excited protein states by R(1ρ): an application to αB-crystallin
Andrew J Baldwin, Lewis E Kay
Methods in Enzymology
|
April 6, 2005
Solution structure and dynamics of integral membrane proteins by NMR: a case study involving the enzyme PagP
Peter M Hwang, Lewis E Kay
Cell
|
February 5, 2021
NMR spectroscopy captures the essential role of dynamics in regulating biomolecular function
T Reid Alderson, Lewis E Kay
Accounts of Chemical Research
|
February 16, 2008
Probing invisible, low-populated States of protein molecules by relaxation dispersion NMR spectroscopy: an application to protein folding
Dmitry M Korzhnev, Lewis E Kay
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
May 1, 2026
A <sup>13</sup>C<sup>β</sup> CEST experiment with improved sensitivity for the characterization of protein excited states
Jeffrey P Bonin, Lewis E Kay
Current Opinion in Structural Biology
|
December 14, 2019
Unveiling invisible protein states with NMR spectroscopy
T Reid Alderson, Lewis E Kay
Page
of 34