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Atomistry » Iron » PDB 7pq1-7qh2 » 7q7g » |
Iron in PDB 7q7g: Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire CapillaryProtein crystallography data
The structure of Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire Capillary, PDB code: 7q7g
was solved by
J.Lieske,
S.Guenther,
S.Saouane,
G.K.Selikhanov,
A.G.Gabdulkhakov,
A.Meents,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Other elements in 7q7g:
The structure of Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire Capillary also contains other interesting chemical elements:
Iron Binding Sites:
The binding sites of Iron atom in the Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire Capillary
(pdb code 7q7g). This binding sites where shown within
5.0 Angstroms radius around Iron atom.
In total only one binding site of Iron was determined in the Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire Capillary, PDB code: 7q7g: Iron binding site 1 out of 1 in 7q7gGo back to Iron Binding Sites List in 7q7g
Iron binding site 1 out
of 1 in the Room Temperature Structure of the Rhodobacter Sphaeroides Photosynthetic Reaction Center F(M197)H Mutant at 30 Mpa Helium Gas Pressure in A Sapphire Capillary
Mono view Stereo pair view
Reference:
J.Lieske,
S.Saouane,
S.Guenther,
J.Meyer,
T.Pakendorf,
B.Reime,
A.Burkhardt,
E.Crosas,
J.Hakanpaeae,
K.Stachnik,
J.Sieg,
M.Rarey,
M.H.Abdellatif,
A.G.Gabdulkhakov,
G.K.Selikhanov,
H.N.Chapman,
A.Meents.
Fixed-Target High-Pressure Macromolecular Crystallography To Be Published.
Page generated: Thu Aug 8 18:03:12 2024
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