Structural Entry Filters:

Search Count: 9

9BUO image
9BUO
Cryoem Structure Of Dpor In The Presence Of Adp-Alf3
Organism: Cereibacter sphaeroides
Method: ELECTRON MICROSCOPY
Resolution:3.68 Å Release Date: 2025-05-07
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR, CU

9E7H image
9E7H
Cryoem Structure Of Bchn-Bchb Bound To Pchlide From The Dpor Under Turnover Complex Dataset
Organism: Cereibacter sphaeroides
Method: ELECTRON MICROSCOPY
Resolution:3.29 Å Release Date: 2025-05-07
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR, CU

9EFU image
9EFU
Cryoem Structure Of Bchn-Bchb Electron Acceptor Component Protein Of Dpor With Pchlide
Organism: Cereibacter sphaeroides
Method: ELECTRON MICROSCOPY
Resolution:2.92 Å Release Date: 2025-05-07
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR, CU

8VQI image
8VQI
Cryoem Structure Of Bchn-Bchb Electron Acceptor Component Protein Of Dpor With Pchlide
Organism: Cereibacter sphaeroides
Method: ELECTRON MICROSCOPY
Resolution:3.13 Å Release Date: 2025-04-30
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR, CU

8VQJ image
8VQJ
Cryoem Structure Of Dpor Under Turnover
Organism: Cereibacter sphaeroides
Method: ELECTRON MICROSCOPY
Resolution:3.82 Å Release Date: 2025-04-30
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR, CU, MG

7JK9 image
7JK9
Helical Filaments Of Plant Light-Dependent Protochlorophyllide Oxidoreductase (Lpor) Bound To Nadph, Pchlide, And Membrane
Organism: Arabidopsis thaliana
Method: ELECTRON MICROSCOPY
Release Date: 2021-03-17
Classification: PHOTOSYNTHESIS
Ligands: NDP, PMR, LMG

2YNM image
2YNM
Structure Of The Adpxalf3-Stabilized Transition State Of The Nitrogenase-Like Dark-Operative Protochlorophyllide Oxidoreductase Complex From Prochlorococcus Marinus With Its Substrate Protochlorophyllide A
Organism: Prochlorococcus marinus
Method: X-RAY DIFFRACTION
Resolution:2.10 Å Release Date: 2013-01-30
Classification: OXIDOREDUCTASE
Ligands: 1PE, EPE, AF3, ADP, MG, SF4, GOL, PMR, K

3AEK image
3AEK
Structure Of The Light-Independent Protochlorophyllide Reductase Catalyzing A Key Reduction For Greening In The Dark
Organism: Rhodobacter capsulatus
Method: X-RAY DIFFRACTION
Resolution:2.30 Å Release Date: 2010-04-21
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR

3AEQ image
3AEQ
Structure Of The Light-Independent Protochlorophyllide Reductase Catalyzing A Key Reduction For Greening In The Dark
Organism: Rhodobacter capsulatus
Method: X-RAY DIFFRACTION
Resolution:2.90 Å Release Date: 2010-04-21
Classification: OXIDOREDUCTASE
Ligands: SF4, PMR
Protein Functional Filters: