AbstractWe use time-resolved crystallography to observe the structural progression of a bacterial blue light photoreceptor throughout its photocycle. Data were collected from 10 ns to 100 ms after photoactivation of the E46Q mutant of photoactive yellow protein. Refinement of transient chromophore conformations shows that the spectroscopically distinct intermediates are formed via progressive disruption of the hydrogen bond network to the chromophore. Although structural change occurs within a few nanoseconds on and around the chromophore, it takes milliseconds for a distinct pattern of tertiary structural change to fully progress through the entire molecule, thus generating the putative signaling state. Remarkably, the coupling between the...
Photoactive Yellow Protein (PYP), discovered almost 20 years ago in Ectothiorhodospira (Halorhodospi...
Photoactive yellow protein (PYP) is a bacterial blue light sensor that induces Halorhodospira haloph...
Photoreceptor proteins play crucial roles in receiving light stimuli that give rise to the responses...
AbstractWe use time-resolved crystallography to observe the structural progression of a bacterial bl...
SummaryIn the bacterial photoreceptor photoactive yellow protein (PYP), absorption of blue light by ...
SummaryIn the bacterial photoreceptor photoactive yellow protein (PYP), absorption of blue light by ...
AbstractVisualizing the three-dimensional structures of a protein during its biological activity is ...
AbstractAs a bacterial blue light sensor the photoactive yellow protein (PYP) undergoes conformation...
AbstractIt is shown that the N-terminal domain of photoactive yellow protein (PYP), which appears re...
How does a biological light sensor convert the energy of a photon through a sequence of structural c...
SummaryThe N-terminally truncated variant of photoactive yellow protein (Δ25-PYP) undergoes a very s...
AbstractIn the photoactive yellow protein, PYP, both Glu46 and Tyr42 form hydrogen bonds to the phen...
ABSTRACT: Photoactive yellow protein (PYP) is a bacterial blue light sensor that induces Halorhodosp...
Crystallographic and spectroscopic analyses of three hinge-bending mutants of the photoactive yellow...
AbstractThe kinetics of conformational change in the N-terminal region of photoactive yellow protein...
Photoactive Yellow Protein (PYP), discovered almost 20 years ago in Ectothiorhodospira (Halorhodospi...
Photoactive yellow protein (PYP) is a bacterial blue light sensor that induces Halorhodospira haloph...
Photoreceptor proteins play crucial roles in receiving light stimuli that give rise to the responses...
AbstractWe use time-resolved crystallography to observe the structural progression of a bacterial bl...
SummaryIn the bacterial photoreceptor photoactive yellow protein (PYP), absorption of blue light by ...
SummaryIn the bacterial photoreceptor photoactive yellow protein (PYP), absorption of blue light by ...
AbstractVisualizing the three-dimensional structures of a protein during its biological activity is ...
AbstractAs a bacterial blue light sensor the photoactive yellow protein (PYP) undergoes conformation...
AbstractIt is shown that the N-terminal domain of photoactive yellow protein (PYP), which appears re...
How does a biological light sensor convert the energy of a photon through a sequence of structural c...
SummaryThe N-terminally truncated variant of photoactive yellow protein (Δ25-PYP) undergoes a very s...
AbstractIn the photoactive yellow protein, PYP, both Glu46 and Tyr42 form hydrogen bonds to the phen...
ABSTRACT: Photoactive yellow protein (PYP) is a bacterial blue light sensor that induces Halorhodosp...
Crystallographic and spectroscopic analyses of three hinge-bending mutants of the photoactive yellow...
AbstractThe kinetics of conformational change in the N-terminal region of photoactive yellow protein...
Photoactive Yellow Protein (PYP), discovered almost 20 years ago in Ectothiorhodospira (Halorhodospi...
Photoactive yellow protein (PYP) is a bacterial blue light sensor that induces Halorhodospira haloph...
Photoreceptor proteins play crucial roles in receiving light stimuli that give rise to the responses...