Sandbox Reserved 969

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=== Vestibule ===
=== Vestibule ===
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In the case of the vestibule, there are too four carbonyl oxygen atom which brings by a valine (Val64). For instance, Na+ is neared to the ligand by this way: distance Na+-ligand=2,9 Ä. Moreover, ions are partially hydrated by four water molecules( they are along with the carboxyl oxygene atoms) : distance ions-H2O=4 Ä. The presence of water allows a greater flexibility in the ion binding so the vestibule may adapt to monovalent cations such as Na+, K+ and Rb+. However, this structure has a greater selectivity for K+ than Na+ : water molecules help to create a selectivity filter thanks to ligand geometry: octahedral arrangement which is impossible with Na+ because of a smaller radius and a hydratation by 5-6 molecules of water <ref> PMID: 16875774 </ref>.
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In the case of the vestibule, there are too four carbonyl oxygen atom which brings by a valine (Val64). For instance, Na+ is neared to the ligand by this way: distance Na+-ligand=2,9 Ä. Moreover, ions are partially hydrated by four water molecules (they are along with the carboxyl oxygene atoms) : distance ions-H2O=4 Ä. The presence of water allows a greater flexibility in the ion binding so the vestibule may adapt to monovalent cations such as Na+, K+ and Rb+. However, this structure has a greater selectivity for K+ than Na+ : water molecules help to create a selectivity filter thanks to ligand geometry: octahedral arrangement which is impossible with Na+ because of a smaller radius and a hydratation by 5-6 molecules of water <ref> PMID: 16875774 </ref>.
The nature of the ligands is '''carbonyl-water'''.
The nature of the ligands is '''carbonyl-water'''.
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Moreover we may underscore a higher affinity for K+ than Na+ because of several reason :
Moreover we may underscore a higher affinity for K+ than Na+ because of several reason :
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First, we can find 4 backbone carbonyl oxygen from <scene name='60/604488/Val64/1'>Val64</scene> which participate in K+ and Rb+ ions chelation because of the formation of an octahedral ligand: an octahedral arrangement oxygen ligands in the channel pore is more favorable for K+ than Na+.
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First, we can find 4 backbones carbonyl oxygen from <scene name='60/604488/Val64/1'>Val64</scene> which participate in K+ and Rb+ ions chelation because of the formation of an octahedral ligand: an octahedral arrangement oxygen ligands in the channel pore is more favorable for K+ than Na+.
The lack of selectivity is due to the fact that the NaK channel have an almost identical structure when it is in complex with Na+, K+ or Rb+ : there is no big rearrangement in the structure of the protein depending on the bound ion. So the structure is stable with any ions, so it is non selective. Moreover, it could have a heavy atom contamination but it happens in a smaller extent with K+ than with Na+.
The lack of selectivity is due to the fact that the NaK channel have an almost identical structure when it is in complex with Na+, K+ or Rb+ : there is no big rearrangement in the structure of the protein depending on the bound ion. So the structure is stable with any ions, so it is non selective. Moreover, it could have a heavy atom contamination but it happens in a smaller extent with K+ than with Na+.

Current revision

NaK Channel 3E83

PDB ID 3e83

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