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A bacteriophytochrome Pr/Pfr heterodimer studied through single-particle time-resolved cryo-electron microscopy

  • Prabin Karki,
  • William C. Budell,
  • Rohit Kannachel,
  • David Menendez,
  • Carolina Hernandez,
  • Joshua H. Mendez,
  • Shemiran Kanou,
  • Manjeet Singh,
  • Chavdar Slavov,
  • Peter Schwander,
  • Tek Narsingh Malla,
  • Emina A. Stojković,
  • Marius Schmidt

摘要

Phytochromes are dimeric photoreceptors found in bacteria, fungi, and plants that reversibly interconvert between a red-absorbing Pr state and a far-red-absorbing Pfr state. In bacteria, phytochromes (BphPs) regulate diverse responses through a two-component signaling pathway comprising a C-terminal histidine kinase (HK) and a response regulator. A previous cryo-EM study of the wild-type BphP from Stigmatella aurantiaca (SaBphP2) revealed a stable Pr/Pfr heterodimer in which the two protomers adopt distinct Pr and Pfr conformations. Here, using the Spotiton technique, we captured the same heterodimer by illuminating SaBphP2 particles on the cryo-EM grid and vitrifying them 10 ms later. Comparison with the Pr/Pr homodimer reveals a 180° rotation of the HK domain, driven by an unwinding of the coiled-coil helices that connect the photosensory core to the enzymatic domain. The large-scale reorientations provide mechanistic insight into light-triggered signal transduction mediated by bacterial phytochromes.