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Atomistry » Chlorine » PDB 7o6j-7obd » 7o8q » |
Chlorine in PDB 7o8q: Nmhr Light State Structure at 22.5 Ms (20 - 25 Ms) After Photoexcitation Determined By Serial Millisecond CrystallographyProtein crystallography data
The structure of Nmhr Light State Structure at 22.5 Ms (20 - 25 Ms) After Photoexcitation Determined By Serial Millisecond Crystallography, PDB code: 7o8q
was solved by
S.Mous,
G.Gotthard,
D.Ehrenberg,
S.Sen,
D.James,
P.Johnson,
T.Weinert,
K.Nass,
A.Furrer,
D.Kekilli,
P.Ma,
S.Bruenle,
C.Casadei,
I.Martiel,
F.Dworkowski,
D.Gashi,
P.Skopintsev,
M.Wranik,
G.Knopp,
E.Panepucci,
V.Panneels,
C.Cirelli,
D.Ozerov,
G.Schertler,
M.Wang,
C.Milne,
J.Standfuss,
I.Schapiro,
J.Heberle,
P.Nogly,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Chlorine Binding Sites:
The binding sites of Chlorine atom in the Nmhr Light State Structure at 22.5 Ms (20 - 25 Ms) After Photoexcitation Determined By Serial Millisecond Crystallography
(pdb code 7o8q). This binding sites where shown within
5.0 Angstroms radius around Chlorine atom.
In total only one binding site of Chlorine was determined in the Nmhr Light State Structure at 22.5 Ms (20 - 25 Ms) After Photoexcitation Determined By Serial Millisecond Crystallography, PDB code: 7o8q: Chlorine binding site 1 out of 1 in 7o8qGo back to![]() ![]()
Chlorine binding site 1 out
of 1 in the Nmhr Light State Structure at 22.5 Ms (20 - 25 Ms) After Photoexcitation Determined By Serial Millisecond Crystallography
![]() Mono view ![]() Stereo pair view
Reference:
S.Mous,
G.Gotthard,
D.Ehrenberg,
S.Sen,
T.Weinert,
P.J.M.Johnson,
D.James,
K.Nass,
A.Furrer,
D.Kekilli,
P.Ma,
S.Brunle,
C.M.Casadei,
I.Martiel,
F.Dworkowski,
D.Gashi,
P.Skopintsev,
M.Wranik,
G.Knopp,
E.Panepucci,
V.Panneels,
C.Cirelli,
D.Ozerov,
G.F.X.Schertler,
M.Wang,
C.Milne,
J.Standfuss,
I.Schapiro,
J.Heberle,
P.Nogly.
Dynamics and Mechanism of A Light-Driven Chloride Pump. Science V. 375 845 2022.
Page generated: Sun Jul 13 04:49:09 2025
ISSN: ESSN 1095-9203 PubMed: 35113649 DOI: 10.1126/SCIENCE.ABJ6663 |
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