Receptor: Difference between revisions

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*[[Molecular Playground/Glutamate Receptor|AMPA glutamate receptor]] by [http://www.umass.edu/cbi/ University of Massachusetts Amherst Chemistry-Biology Interface Program] at UMass Amherst and on display at the [http://www.molecularplayground.org/ Molecular Playground].
*[[Molecular Playground/Glutamate Receptor|AMPA glutamate receptor]] by [http://www.umass.edu/cbi/ University of Massachusetts Amherst Chemistry-Biology Interface Program] at UMass Amherst and on display at the [http://www.molecularplayground.org/ Molecular Playground].
Full view of the glutamate receptor shows the overall structure (amino-terminal, ligand-binding and transmembrane domains) in both <scene name='User:Mariel_Feliciano/sandbox_1/Full_view_black_background/6'>ribbon</scene> (MF) and <scene name='User:Mariel_Feliciano/sandbox_1/Full_view_spacefill/2'>spacefilling</scene> models.
Full view of the glutamate receptor shows the overall structure (N-terminal, ligand-binding and transmembrane domains) in both <scene name='User:Mariel_Feliciano/sandbox_1/Full_view_black_background/6'>ribbon</scene> and <scene name='User:Mariel_Feliciano/sandbox_1/Full_view_spacefill/2'>spacefilling</scene> models. <scene name='User:Mariel_Feliciano/sandbox_1/Amino_terminal_domains/2'>N-terminal domain</scene> is a part of the extracellular domain. This domain is implicated in receptor assembly, trafficking, and localization.  
 
*<scene name='Molecular_Playground/Glutamate_Receptor/Transmembrane_domains/5'>Transmembrane Domain</scene>.
Zooming in at the top of the receptor (<scene name='User:Mariel_Feliciano/sandbox_1/Amino_terminal_domains/2'>Amino Terminal Domains</scene>) (RCB) one can view the amino terminal domain, which is a part of the extracellular domain. This domain is implicated in receptor assembly, trafficking, and localization.
*<scene name='Molecular_Playground/Glutamate_Receptor/Transmembrane_domains_pore2/1'>Transmembrane Domain</scene>. This domain widens in response to glutamate binding allowing for positive ions to pass through the post-synaptic membrane.  
 
*<scene name='Molecular_Playground/Glutamate_Receptor/Glu_antagoinist/2'>Receptor antagonist 2K200225 binding site</scene>. Close up view of the ligand binding site (<scene name='Molecular_Playground/Glutamate_Receptor/Glu_agonist_/2'>Glutamate Binding</scene>) (AH) of the endogenous ligand glutamate.
Moving toward the bottom of the receptor (<scene name='Molecular_Playground/Glutamate_Receptor/Transmembrane_domains/5'>Transmembrane Domain</scene>) (SM) one can view the transmembrane domain. Here is the same domain separated from the rest of the protein.<scene name='Molecular_Playground/Glutamate_Receptor/Transmembrane_domains_pore2/1'>Transmembrane Domain</scene> (DM). This domain widens in response to glutamate binding allowing for positive ions to pass through the post-synaptic membrane.
 
This view (<scene name='Molecular_Playground/Glutamate_Receptor/Glu_antagoinist/2'>receptor antagonist</scene>) highlights the area where a receptor antagonist 2K200225, will bind. Close up view of the ligand binding site (<scene name='Molecular_Playground/Glutamate_Receptor/Glu_agonist_/2'>Glutamate Binding</scene>) (AH) of the endogenous ligand glutamate.


*[[Glutamate receptor (GluA2)]]
*[[Glutamate receptor (GluA2)]]

Revision as of 15:15, 22 April 2021

Nicotinic Acetylcholine Receptor, PDB code 2bg9

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References

Proteopedia Page Contributors and Editors (what is this?)

Alexander Berchansky