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Probing slow protein dynamics by adiabatic R
1ρ
and R
2ρ
NMR experiments
Silvia Mangia
, Nathaniel J. Traaseth
,
Gianluigi Veglia
,
Michael Garwood
,
Shalom Michaeli
Center for Magnetic Resonance Research
Structural Biology and Biophysics (TMED)
Cellular Mechanisms of Cancer
Research output
:
Contribution to journal
›
Article
›
peer-review
42
Scopus citations
Overview
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Dive into the research topics of 'Probing slow protein dynamics by adiabatic R
1ρ
and R
2ρ
NMR experiments'. Together they form a unique fingerprint.
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Keyphrases
Protein Dynamics
100%
NMR Experiments
100%
(R)-1
100%
Relaxation Rate
66%
Spin-lock
66%
Relaxation Dispersion
66%
Dispersion Curves
66%
Protein Binding
33%
Cryoprobe
33%
Dynamic Range
33%
Radio Frequency
33%
Ubiquitin
33%
Irradiation
33%
Field Strength
33%
Protein Folding
33%
Magnetic Field Strength
33%
Adiabatic Full Passage
33%
Carr-Purcell-Meiboom-Gill
33%
Frequency Offset
33%
Rotating Frame
33%
Dispersion Experiment
33%
Dynamic Parameters
33%
Dispersion Analysis
33%
Protein Allostery
33%
Effective Spin
33%
MR Hardware
33%
Time Spacing
33%
Immunology and Microbiology
Adiabaticity
100%
Dispersion
100%
Protein Dynamics
100%
Pulse Rate
40%
Allosterism
20%
Dynamics
20%
Radiofrequency
20%
Rotating Frame
20%
Magnetic Field
20%
Spin Locking
20%
Protein Folding
20%
Ubiquitins
20%
Chemistry
NMR Spectroscopy
100%
Relaxation
100%
Protein Dynamics
100%
Protein Folding
25%
Rotating Frame
25%
Spin Locking
25%
Magnetic Field
25%
Ubiquitins
25%
Allostery
25%
Physics
Nuclear Magnetic Resonance
100%
Field Strength
66%
Rotating Frame
33%
Magnetic Field
33%
Dynamic Range
33%
Dispersion Analysis
33%