EMD-50007

Single-particle
3.8 Å
EMD-50007 Deposition: 01/04/2024
Map released: 04/09/2024
Last modified: 20/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-50007

Consensus refinement of the full-length Pseudomonas aeruginosa bacteriophytochrome in its Pr state

EMD-50007

Single-particle
3.8 Å
EMD-50007 Deposition: 01/04/2024
Map released: 04/09/2024
Last modified: 20/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Pseudomonas aeruginosa
Sample: Homodimeric complex of the protein bacteriophytochrome containing its cofactor biliverdin

Deposition Authors: Bodizs S , Westenhoff S
Cryo-EM structures of a bathy phytochrome histidine kinase reveal a unique light-dependent activation mechanism.
Bodizs S , Meszaros P, Grunewald L, Takala H , Westenhoff S
(2024) Structure , 32 , 1952 - 1962.e3
PUBMED: 39216473
DOI: doi:10.1016/j.str.2024.08.008
ISSN: 0969-2126
ASTM: STRUE6
Abstract:
Phytochromes are photoreceptor proteins in plants, fungi, and bacteria. They can adopt two photochromic states with differential biochemical responses. The structural changes transducing the signal from the chromophore to the biochemical output modules are poorly understood due to challenges in capturing structures of the dynamic, full-length protein. Here, we present cryoelectron microscopy (cryo-EM) structures of the phytochrome from Pseudomonas aeruginosa (PaBphP) in its resting (Pfr) and photoactivated (Pr) state. The kinase-active Pr state has an asymmetric, dimeric structure, whereas the kinase-inactive Pfr state opens up. This behavior is different from other known phytochromes and we explain it with the unusually short connection between the photosensory and output modules. Multiple sequence alignment of this region suggests evolutionary optimization for different modes of signal transduction in sensor proteins. The results establish a new mechanism for light-sensing by phytochrome histidine kinases and provide input for the design of optogenetic phytochrome variants.