Helix formation is a dynamical bottleneck in the recovery reaction of Photoactive Yellow Protein
Author:
Publisher
Wiley
Subject
Molecular Biology,Biochemistry,Structural Biology
Reference46 articles.
1. Photoactive Yellow Protein from the purple phototrophic bacterium Ectothiorhodospira halophila-quantum yield of photobleaching and effects of temperature alcohols glycerol and sucrose on kinetics of photobleaching and recovery;Meyer;Biophys J,1989
2. The eubacterium Ectothiorhodospirahalophila is negatively phototactic with a wavelength dependence that fits the absorption-spectrum of the Photoactive Yellow Protein;Sprenger;J Bacteriol,1993
3. Primary structure of a Photoactive Yellow Protein from the phototrophic bacterium Ectothiorhodospira halophila with evidence for the mass and the binding-site of the chromophore;van Beeumen;Protein Sci,1993
4. 1.4 Ångstrom structure of Photoactive Yellow Protein a cytosolic photoreceptor-unusual fold active-site and chromophore;Borgstahl;Biochemistry,1995
5. Photoactive Yellow Protein: a structural prototype for the three-dimensional fold of the PAS domain superfamily;Pellequer;Proc Natl Ac Sci USA,1998
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1. Multiscale Approach to the Determination of the Photoactive Yellow Protein Signaling State Ensemble;PLoS Computational Biology;2014-10-30
2. Confinement-Induced States in the Folding Landscape of the Trp-cage Miniprotein;The Journal of Physical Chemistry B;2012-09-25
3. Transition path sampling of protein conformational changes;Chemical Physics;2012-03
4. Reordering Hydrogen Bonds Using Hamiltonian Replica Exchange Enhances Sampling of Conformational Changes in Biomolecular Systems;The Journal of Physical Chemistry B;2009-04-09
5. pH Dependence of the Photoactive Yellow Protein Photocycle Recovery Reaction Reveals a New Late Photocycle Intermediate with a Deprotonated Chromophore;Journal of Biological Chemistry;2009-02
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