Sandbox Reserved 1703: Difference between revisions

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===Overall Structure===
===Overall Structure===
[[Image:Domains of mGlu2.jpg|200 px|left thumb|'''Figure 2.'''Show the regions of mGlu2.]]
[[Image:Domains of mGlu2.jpg|200 px|left thumb|'''Figure 2.'''Show the regions of mGlu2.]]
[https://en.wikipedia.org/wiki/Cryogenic_electron_microscopy Cryo-EM] studies of mGlu2 have yielded adequate structural maps of mGlu2 in various activation states. These maps provided clearer understanding of the conformational changes between the inactive and active states of mGlu2<ref name="Lin" />. The overall <scene name='90/904307/Inactive_structure/1'>structure</scene>  of the mGlu2 is composed of 3 main parts: a ligand binding <scene name='90/904307/Vft/1'>Venus FlyTrap Domain(VFT)</scene>, followed by a <scene name='90/904307/Crds/1'>Cysteine Rich Domain</scene> linker to the Transmembrane Domain that contains  <scene name='90/904307/Inactive_7tm/1'>7 alpha helices (7TM)</scene> on both the <scene name='90/904308/Alphaandbetachain/1'>alpha and beta</scene> chains that aid in the binding of the G-Protein. Class C CPCRs such as mGlu2, are activated by their ability to form dimers.  
[https://en.wikipedia.org/wiki/Cryogenic_electron_microscopy Cryo-EM] studies of mGlu2 have yielded adequate structural maps of mGlu2 in various activation states. These maps provided clearer understanding of the conformational changes between the inactive and active states of mGlu2<ref name="Lin" />. The overall <scene name='90/904307/Inactive_structure/1'>structure</scene>  of the mGlu2 is composed of 3 main parts: a ligand binding <scene name='90/904307/Vft/1'>Venus FlyTrap Domain(VFT)</scene>, followed by a <scene name='90/904307/Crds/1'>Cysteine Rich Domain</scene> linker to the Transmembrane Domain that contains  <scene name='90/904307/Inactive_7tm/1'>7 alpha helices (7TM)</scene> on both the <scene name='90/904308/Alphaandbetachain/1'>alpha and beta</scene> chains that aid in the binding of the G-Protein. Class C CPCRs such as mGlu2, are activated by their ability to form dimers.  



Revision as of 18:07, 14 April 2022

Metabotropic Glutamate Receptor 2

Fully Active mGlu2 with G-Protein Bound

Drag the structure with the mouse to rotate

References

Student Contributors

Frannie Brewer and Ashley Wilkinson