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Atomistry » Magnesium » PDB 4cgk-4cs3 » 4ck7 » |
Magnesium in PDB 4ck7: Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy ExperimentOther elements in 4ck7:
The structure of Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy Experiment also contains other interesting chemical elements:
Magnesium Binding Sites:
The binding sites of Magnesium atom in the Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy Experiment
(pdb code 4ck7). This binding sites where shown within
5.0 Angstroms radius around Magnesium atom.
In total 2 binding sites of Magnesium where determined in the Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy Experiment, PDB code: 4ck7: Jump to Magnesium binding site number: 1; 2; Magnesium binding site 1 out of 2 in 4ck7Go back to Magnesium Binding Sites List in 4ck7
Magnesium binding site 1 out
of 2 in the Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy Experiment
Mono view Stereo pair view
Magnesium binding site 2 out of 2 in 4ck7Go back to Magnesium Binding Sites List in 4ck7
Magnesium binding site 2 out
of 2 in the Pseudo-Atomic Model of Microtubule-Bound Human Kinesin-5 Motor Domain in Presence of Adp.Alfx (Neck-Linker in Its Disconnected Conformation, Based on Cryo-Electron Microscopy Experiment
Mono view Stereo pair view
Reference:
A.Goulet,
J.Major,
Y.Jun,
S.P.Gross,
S.S.Rosenfeld,
C.A.Moores.
Comprehensive Structural Model of the Mechanochemical Cycle of A Mitotic Motor Highlights Molecular Adaptations in the Kinesin Family. Proc.Natl.Acad.Sci.Usa V. 111 1837 2014.
Page generated: Thu Aug 15 16:48:51 2024
ISSN: ISSN 0027-8424 PubMed: 24449904 DOI: 10.1073/PNAS.1319848111 |
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