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Atomistry » Chlorine » PDB 4yx5-4z6u » 4yxw | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Atomistry » Chlorine » PDB 4yx5-4z6u » 4yxw » |
Chlorine in PDB 4yxw: Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate.Enzymatic activity of Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate.
All present enzymatic activity of Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate.:
3.6.3.14; Protein crystallography data
The structure of Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate., PDB code: 4yxw
was solved by
J.V.Bason,
M.G.Montgomery,
A.G.W.Leslie,
J.E.Walker,
with X-Ray Crystallography technique. A brief refinement statistics is given in the table below:
Other elements in 4yxw:
The structure of Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate. also contains other interesting chemical elements:
Chlorine Binding Sites:
The binding sites of Chlorine atom in the Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate.
(pdb code 4yxw). 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 Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate., PDB code: 4yxw: Chlorine binding site 1 out of 1 in 4yxwGo back to![]() ![]()
Chlorine binding site 1 out
of 1 in the Bovine Heart Mitochondrial F1-Atpase Inhibited By Amp-Pnp and Adp in the Presence of Thiophosphate.
![]() Mono view ![]() Stereo pair view
Reference:
J.V.Bason,
M.G.Montgomery,
A.G.Leslie,
J.E.Walker.
How Release of Phosphate From Mammalian F1-Atpase Generates A Rotary Substep. Proc.Natl.Acad.Sci.Usa V. 112 6009 2015.
Page generated: Fri Jul 26 04:19:07 2024
ISSN: ESSN 1091-6490 PubMed: 25918412 DOI: 10.1073/PNAS.1506465112 |
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