M2 Proton Channel: Difference between revisions
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== Structure == | == Structure == | ||
The M2 proton channel from influenza A is 97 amino acid residues and forms a 24-residue N-terminal extracellular domain, a 19-residue trans-membrane domain, and a 54-residue C-terminal cytoplasmic domain | The M2 proton channel from influenza A is 97 amino acid residues and forms a 24-residue N-terminal extracellular domain, a 19-residue trans-membrane domain, and a 54-residue C-terminal cytoplasmic domain.<ref name="Wu" /> The 19-residue TM domain forms the highly selective proton channel.<ref name="Takeuchi">PMID:12972149 </ref> Circular dichroism spectra has shown the TM domain to form an <scene name='User:Sarah_Henke/Sandbox_1/Momomer/2'>α-helix</scene> that spans the membrane.<ref name="Wu" /> By analytical ultracentrifugation, the TM domain is found to form <scene name='User:Sarah_Henke/Sandbox_1/Alpha_hlix/1'>homotetramers</scene> which contains four identical α-helices.<ref name="Takeuchi" /> Secondary structure is color coded by {{Template:ColorKey_Helix}}. When viewed in the <scene name='User:Sarah_Henke/Sandbox_1/N_to_c/1'>N->C color coding</scene> the <FONT COLOR="blue">'''N-terminus'''</FONT> is located on the extracellular side of the membrane while the <FONT COLOR="red">'''C-terminus'''</FONT> is located on the cytosolic side of the membrane. This tetrameric bundle of the TM domain is found by NMR to be tilted by 25-38° from the channel axis.<ref name="Takeuchi" /> The trameric helices form a left-handed bundle that resembles a truncated cone.<ref name="Stouffer" /> The TM helicies are arranged around the channel pore with an approximate four-fold rotational symmetry.<ref name="Takeuchi" /> | ||
== Central Cavity == | == Central Cavity == | ||
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The hydrophilic residues in each α-helix monomer are oriented towards the pore lumen.<ref name="Wu" /> The <scene name='User:Sarah_Henke/Sandbox_1/Hydrophobic/1'>hydrophobic</scene> residues will be in contact with the membrane (Color code= {{Template:ColorKey_Hydrophobic}}). The central cavity of the M2 channel is a water-filled pore that is interrupted at residue His37 in each monomer.<ref name="Lear">PMID:12972146 </ref> Residues His37 and Trp41 play a key role in the gating mechanism. | The hydrophilic residues in each α-helix monomer are oriented towards the pore lumen.<ref name="Wu" /> The <scene name='User:Sarah_Henke/Sandbox_1/Hydrophobic/1'>hydrophobic</scene> residues will be in contact with the membrane (Color code= {{Template:ColorKey_Hydrophobic}}). The central cavity of the M2 channel is a water-filled pore that is interrupted at residue His37 in each monomer.<ref name="Lear">PMID:12972146 </ref> Residues His37 and Trp41 play a key role in the gating mechanism. | ||
<applet load='3bkd' size='300' frame='true' align='right' caption='High resolution Crystal structure of Transmembrane domain of M2 protein [Stouffer et al, 2008]' /> | <applet load='3bkd' size='300' frame='true' align='right' caption='High resolution Crystal structure of Transmembrane domain of M2 protein [Stouffer et al, 2008]' /> | ||
== pH Gating == | == pH Gating == | ||