Connexin: Difference between revisions

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The 3D structure of a mutant human connexin 26 <scene name='70/701426/Mutant_connexin26_-cx26m34a/1'>(Cx26M34A)</scene> channel shows an unexpected density within the vestibule of each hemichannel compared to the <scene name='70/701426/Wild_type_connexin/1'>wild type connexin 26</scene> , which is called a plug <ref name='pdb'/> , That plug was decreased in the the human mutant connexin 26 <scene name='70/701426/Deletion/1'>Cx26del2-7</scene> structure, indicating that the N terminus significantly contributes to form this plug feature. Experiments with this mutant show significantly reduced dye coupling between [http://en.wikipedia.org/wiki/HeLa HeLa cells] transiently expressing Cx26M34A gap junctions. <ref name='pdb'/>
The 3D structure of a mutant human connexin 26 <scene name='70/701426/Mutant_connexin26_-cx26m34a/1'>(Cx26M34A)</scene> channel shows an unexpected density within the vestibule of each hemichannel compared to the <scene name='70/701426/Wild_type_connexin/1'>wild type connexin 26</scene> , which is called a plug <ref name='pdb'/> , That plug was decreased in the the human mutant connexin 26 <scene name='70/701426/Deletion/1'>Cx26del2-7</scene> structure, indicating that the N terminus significantly contributes to form this plug feature. Experiments with this mutant show significantly reduced dye coupling between [http://en.wikipedia.org/wiki/HeLa HeLa cells] transiently expressing Cx26M34A gap junctions. <ref name='pdb'/>
Functional analysis of the Cx26M34A channels revealed that these channels are predominantly closed, with the residual electrical conductance showing normal voltage gating. N-terminal deletion mutants with and without the M34A mutation showed no electrical activity in paired Xenopus oocytes and significantly decreased dye permeability in HeLa cells. Comparing this closed structure with the published X-ray structure of wild-type Cx26, which is proposed to be in an open state, revealed a radial outward shift in the transmembrane helices in the closed state, presumably to accommodate the N-terminal plug occluding the pore. Because both Cx26del2-7 and Cx26M34Adel2-7 channels are closed, the N terminus appears to have a prominent role in stabilizing the open configuration.  <ref name='pdb'/>
Functional analysis of the Cx26M34A channels revealed that these channels are predominantly closed, with the residual electrical conductance showing normal voltage gating. N-terminal deletion mutants with and without the M34A mutation showed no electrical activity in paired Xenopus oocytes and significantly decreased dye permeability in HeLa cells. Comparing this closed structure with the published X-ray structure of wild-type Cx26, which is proposed to be in an open state, revealed a radial outward shift in the transmembrane helices in the closed state, presumably to accommodate the N-terminal plug occluding the pore. Because both Cx26del2-7 and Cx26M34Adel2-7 channels are closed, the N terminus appears to have a prominent role in stabilizing the open configuration.  <ref name='pdb'/>
=3D structures of connexin=
[[Connexin 3D structure]]
</StructureSection>
</StructureSection>
=3D structures of connexin=
=3D structures of connexin=
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**[[2zw3]] – hCX26 – human<br />
**[[2zw3]] – hCX26 – human<br />
**[[5er7]], [[5era]] – hCX26 (mutant) <br />
**[[5er7]], [[5era]], [[5kjg]] – hCX26 (mutant) <br />
**[[3iz1]], [[3iz2]] – hCX26 (mutant) - CryoEM<br />
**[[3iz1]], [[3iz2]] – hCX26 (mutant) - CryoEM<br />


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**[[3shw]] – hCX45 C-terminal peptide + tight junction protein<br />
**[[3shw]] – hCX45 C-terminal peptide + tight junction protein<br />


*Connexin 46 or gap junction α-3 protein
**[[6mhq]] – sCX46 – sheep – Cryo EM<br />
*Connexin 50 or gap junction α-8 protein
**[[6mhy]] – sCX50 – Cryo EM<br />
}}
}}



Revision as of 09:37, 15 May 2019

Human connexin-26 structure (PDB code 2zw3)

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3D structures of connexin

Updated on 15-May-2019

References

Proteopedia Page Contributors and Editors (what is this?)

Safaa Salah Hussiesy, Doaa Naffaa, Michal Harel, Jaime Prilusky