User:Rana Saad/The human GABAb receptor

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===GABA<sub>B</sub> receptors===
===GABA<sub>B</sub> receptors===
Mammalian GABA<sub>B</sub> receptor is a class C [http://proteopedia.org/wiki/index.php/G_protein-coupled_receptor#3D_Structures_of_G_protein-coupled_receptors G-protein coupled receptor]<ref>PMID:23237917</ref>. Its structure is similar to [[Metabotropic glutamate receptor|metabotropic glutamate receptors]] (mGluR) ligand binding domain. GABA<sub>B</sub> receptor is central to inhibitory neurotransmission in the brain and so is considered a good candidate for treatments against alcoholism, stress and number of brain diseases<ref>PMID:19913201</ref>.
Mammalian GABA<sub>B</sub> receptor is a class C [http://proteopedia.org/wiki/index.php/G_protein-coupled_receptor#3D_Structures_of_G_protein-coupled_receptors G-protein coupled receptor]<ref>PMID:23237917</ref>. Its structure is similar to [[Metabotropic glutamate receptor|metabotropic glutamate receptors]] (mGluR) ligand binding domain. GABA<sub>B</sub> receptor is central to inhibitory neurotransmission in the brain and so is considered a good candidate for treatments against alcoholism, stress and number of brain diseases<ref>PMID:19913201</ref>.
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The GABA<sub>B</sub> receptor causes the opening of the K<sup>+</sup> channels in the postsynaptic membrane, bringing the neuron closer to the [https://www.youtube.com/watch?v=4kx9_0YwShE equilibrium potential] of K<sup>+</sup>, producing [http://en.wikipedia.org/wiki/Hyperpolarization_(biology) hyperpolarization]. As a result the Ca<sup>+2</sup> channels in the presynaptic terminal close and neurotransmitter release stops. GABA<sub>B</sub> can also reduce the activity of adenylyl cyclase and decrease the cell’s conductance to Ca<sup>+2</sup>.[http://physrev.physiology.org/content/84/3/835.short].
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The GABA<sub>B</sub> receptor causes the opening of the K<sup>+</sup> channels in the postsynaptic membrane, bringing the neuron closer to the [https://www.youtube.com/watch?v=4kx9_0YwShE equilibrium potential] of K<sup>+</sup>, producing [http://en.wikipedia.org/wiki/Hyperpolarization_(biology) hyperpolarization]. As a result the Ca<sup>+2</sup> channels in the presynaptic terminal close and neurotransmitter release stops. In addition GABA<sub>B</sub> receptor function lead to reduce the activity of adenylyl cyclase and decrease the cell’s conductance to Ca<sup>+2</sup>.[http://physrev.physiology.org/content/84/3/835.short].
[[Image:GABAb.receptor.cartoon2.png|thumb|250px]]
[[Image:GABAb.receptor.cartoon2.png|thumb|250px]]
=='''''Structure'''''==
=='''''Structure'''''==
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[[ Image:GABAb bound to antagonist2.jpg|center|450px]]
[[ Image:GABAb bound to antagonist2.jpg|center|450px]]
=='''''Dimerization motif'''''==
=='''''Dimerization motif'''''==
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When the GBR1 subunit is expressed alone, it is trapped in vesicles within the cell, whereas the GBR2 alone is expressed on the cell surface, but cannot bind GABA or activate G proteins. When both receptor subunits are expressed in the same cell, the receptors interact through <scene name='70/701448/C_termenal_coild_coil_domain/1'>coiled-coil domain</scene><ref>PMID:24778228</ref><ref>PMID:12209124</ref> (PDB 4PAS) in their carboxyl tails. They are then expressed on the cell surface, bind GABA and activate G proteins.
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When the GBR1 subunit is expressed alone, it is trapped in vesicles within the cell, whereas the GBR2 alone is expressed on the cell surface, but cannot bind GABA or activate G proteins. When both receptor subunits are expressed in the same cell, the receptor interact through <scene name='70/701448/C_termenal_coild_coil_domain/1'>coiled-coil domain</scene><ref>PMID:24778228</ref><ref>PMID:12209124</ref> (PDB 4PAS) in their carboxyl tails. They are then expressed on the cell surface, bind GABA and activate G proteins.
This domain is shaped by <scene name='70/701448/Coild-coil_domain/1'>polar interactions within the hydrophobic core</scene> and is stabilized by <scene name='70/701448/C_termenal_coild_coil_domain/3'>hydrogen-bonding interactions</scene><ref>PMID:24778228</ref>.
This domain is shaped by <scene name='70/701448/Coild-coil_domain/1'>polar interactions within the hydrophobic core</scene> and is stabilized by <scene name='70/701448/C_termenal_coild_coil_domain/3'>hydrogen-bonding interactions</scene><ref>PMID:24778228</ref>.

Revision as of 06:24, 9 July 2015

GABAb receptor

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