User:Rana Saad/The human GABAb receptor

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GABA<sub>B</sub> receptor functions as an obligatory heterodimer subunit of '''GABA<sub>B1</sub>''' (GBR1) and '''GABA<sub>B2</sub>''' (GBR2). '''GBR1''' (blue) is responsible for ligand-binding. '''GBR2''' (green), on the other hand, is responsible for G protein coupling subunit. The GABA<sub>B</sub> receptor is one of the few obligate receptor heterodimer currently known. There is no crystal or NMR structure of the complete receptor since it has extracellular and inter cellular regions.
GABA<sub>B</sub> receptor functions as an obligatory heterodimer subunit of '''GABA<sub>B1</sub>''' (GBR1) and '''GABA<sub>B2</sub>''' (GBR2). '''GBR1''' (blue) is responsible for ligand-binding. '''GBR2''' (green), on the other hand, is responsible for G protein coupling subunit. The GABA<sub>B</sub> receptor is one of the few obligate receptor heterodimer currently known. There is no crystal or NMR structure of the complete receptor since it has extracellular and inter cellular regions.
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Each subunit, GBR1 and GBR2, is a domain of seven-transmembrane helices, composed of a large extracellular domain called [http://en.wikipedia.org/wiki/Venus_flytrap venus flytrap], and intercellular domain which important for the dimerzation.
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Each subunit, GBR1 and GBR2, is a domain of seven-transmembrane helices, composed of a large extracellular domain called [http://en.wikipedia.org/wiki/Venus_flytrap venus flytrap], and intercellular domain which is important for the dimerzation.
==='''The extracellular domain VFT'''===
==='''The extracellular domain VFT'''===
The VFT contains two lobe-shaped domains: LB1 and LB2, which are connected by three short loops.
The VFT contains two lobe-shaped domains: LB1 and LB2, which are connected by three short loops.

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GABAb receptor

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