Many biological processes depend on detecting and responding to light. The response is often mediated by a structural change in a protein that begins when absorption of a photon causes isomerization of a chromophore bound to the protein. Pande et al. used x-ray pulses emitted by a free electron laser source to conduct time-resolved serial femtosecond crystallography in the time range of 100 fs to 3 ms. This allowed for the real-time tracking of the trans-cis isomerization of the chromophore in photoactive yellow protein and the associated structural changes in the protein.Science, this issue p. 725A variety of organisms have evolved mechanisms to detect and respond to light, in which the response is mediated by protein structural changes af...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
Real-time probing of structural transitions of a photoactive protein is challenging owing to the lac...
A variety of organisms have evolved mechanisms to detect and respond to light, in which the response...
Serial femtosecond crystallography using ultrashort pulses from x-ray free electron lasers (XFELs) e...
Photoactive proteins typically rely on structural changes in a small chromophore to initiate a biolo...
The light-induced isomerization of a double bond is the key event that allows the conversion of ligh...
The photoisomerization reaction of a fluorescent protein chromophore occurs on the ultrafast timesca...
International audienceDynamical changes in protein structures are essential for protein function and...
Light absorption can trigger biologically relevant protein conformational changes. The light-induced...
High-intensity femtosecond pulses from an X-ray free-electron laser enable pump probe experiments fo...
Proteins are dynamic objects and undergo conformational changes when functioning. These changes rang...
Chromophore cis/trans photoisomerization is a fundamental process in chemistry and in the activation...
To understand how signaling proteins function, it is crucial to know the time-ordered sequence of ev...
International audienceLight absorption can trigger biologically relevant protein conformational chan...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
Real-time probing of structural transitions of a photoactive protein is challenging owing to the lac...
A variety of organisms have evolved mechanisms to detect and respond to light, in which the response...
Serial femtosecond crystallography using ultrashort pulses from x-ray free electron lasers (XFELs) e...
Photoactive proteins typically rely on structural changes in a small chromophore to initiate a biolo...
The light-induced isomerization of a double bond is the key event that allows the conversion of ligh...
The photoisomerization reaction of a fluorescent protein chromophore occurs on the ultrafast timesca...
International audienceDynamical changes in protein structures are essential for protein function and...
Light absorption can trigger biologically relevant protein conformational changes. The light-induced...
High-intensity femtosecond pulses from an X-ray free-electron laser enable pump probe experiments fo...
Proteins are dynamic objects and undergo conformational changes when functioning. These changes rang...
Chromophore cis/trans photoisomerization is a fundamental process in chemistry and in the activation...
To understand how signaling proteins function, it is crucial to know the time-ordered sequence of ev...
International audienceLight absorption can trigger biologically relevant protein conformational chan...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
The photocycle of the bacterial blue-light photoreceptor, photoactive yellow protein, was stimulated...
Real-time probing of structural transitions of a photoactive protein is challenging owing to the lac...