Connexin: Difference between revisions

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==Connexin structure==
==Connexin structure==
Connexins are integral α-hellical transmembrane proteins  that form intercellular channels in vertebrates <scene name='70/701426/Connexons_secondary_structure/1'>connexons secondary structure</scene>. Six connexins form a hexamerical assembly, known as connexon or hemichannel <scene name='70/701426/Connexin_26_basic_structure/2'>Connexon as a six connexins assembly</scene>, which delineates an aqueous pore with a minimum diameter of ∼1.2 nm. When two hemichannels from adjacent cells dock and join, leaving a gap of ∼2–3 nm, they may form an intercellular [http://www.uniprot.org/uniprot/P29033 gap junction channel] which spans the two pαlasma membranes and allows the exchange of cytoplasmic molecules with size up to ∼1 kDa.
Connexins are integral α-hellical transmembrane proteins  that form intercellular channels in vertebrates <scene name='70/701426/Connexons_secondary_structure/1'>connexons secondary structure</scene>. Six connexins form a hexamerical assembly, known as connexon or hemichannel <scene name='70/701426/Connexin_26_basic_structure/2'>Connexon as a six connexins assembly</scene>, which delineates an aqueous pore with a minimum diameter of ∼1.2 nm. When two hemichannels from adjacent cells dock and join, leaving a gap of ∼2–3 nm, they may form an intercellular [http://www.uniprot.org/uniprot/P29033 gap junction channel] which spans the two pαlasma membranes and allows the exchange of cytoplasmic molecules with size up to ∼1 kDa.
The height of the modelled structure of the gap junction channel without disordered cytoplasmic loop and C-terminal segment is approximately 155A °. The transmembrane region and membrane surfaces were deduced from the distribution of hydrophobic and aromatic amino acid residues along the noncrystallographic six-fold axis It is a tsuzumi shape, a traditional Japanese drum.<ref name='Structure'/> [[Image:distances a.jpg]]
The height of the modelled structure of the gap junction channel without disordered cytoplasmic loop and C-terminal segment is approximately 155Å. The transmembrane region and membrane surfaces were deduced from the distribution of hydrophobic and aromatic amino acid residues along the noncrystallographic six-fold axis It is a tsuzumi shape, a traditional Japanese drum.<ref name='Structure'/> [[Image:distances a.jpg]]
The protomers in each hexameric connexon are related by a sixfold non-crystallographic symmetry (NCS) axis perpendicular to the membrane plane . The transmembrane region of the channel is 38A ° thick.TM2 extends about 19A ° from the membrane surface into the cytoplasm. The extracellular region of the connexon extends 23A ° from the membrane surface and interdigitates to the opposite connexon by 6A °, resulting in the intercellular ‘gap’ of 40A °. The extracellular lobes are not protruding so much, as indicated by the structural analyses of split gap junction channels with atomic force microscopy and electron microscopy. The relatively flat lobes could be attributed to the conformational change of the extracellular region induced by the docking of two connexons. The diameter of the connexon is biggest at the cytoplasmic side
The protomers in each hexameric connexon are related by a sixfold non-crystallographic symmetry (NCS) axis perpendicular to the membrane plane . The transmembrane region of the channel is 38Å thick.TM2 extends about 19Å from the membrane surface into the cytoplasm. The extracellular region of the connexon extends 23Å from the membrane surface and interdigitates to the opposite connexon by , resulting in the intercellular ‘gap’ of 40Å. The extracellular lobes are not protruding so much, as indicated by the structural analyses of split gap junction channels with atomic force microscopy and electron microscopy. The relatively flat lobes could be attributed to the conformational change of the extracellular region induced by the docking of two connexons. The diameter of the connexon is biggest at the cytoplasmic side
of the membrane, 92A ° , and smallest at the extracellular side, 51A ° .
of the membrane, 92Å , and smallest at the extracellular side, 51Å .
Viewed from the top, the channel looks like a ‘hexagonal nut’ with a pore in the centre .The diameter of the pore is about 40A ° at the cytoplasmic side of the channel, narrowing to 14A ° near the extracellular membrane surface and then widening to 25A ° in the extracellular space.<ref name='Structure'/>
Viewed from the top, the channel looks like a ‘hexagonal nut’ with a pore in the centre .The diameter of the pore is about 40Å at the cytoplasmic side of the channel, narrowing to 14Å near the extracellular membrane surface and then widening to 25Å in the extracellular space.<ref name='Structure'/>
[[Image:distances b.jpg]]
[[Image:distances b.jpg]]
==Structure of the cx26 protomer:==
==Structure of the cx26 protomer:==

Revision as of 10:12, 17 May 2015

Caption for this structure

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References

Proteopedia Page Contributors and Editors (what is this?)

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