Adenosine A2A receptor

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== 3D Structures of adenosine A2A receptor ==
== 3D Structures of adenosine A2A receptor ==
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[[Adenosine A2A receptor 3D structures==
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[[Adenosine A2A receptor 3D structures]]
</StructureSection>
</StructureSection>
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== 3D Structures of adenosine A2A receptor ==
 
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Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
 
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[[3eml]] – hA2AR/lysozyme + antagonist – human<br />
 
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[[5k2a]], [[5k2b]], [[5k2c]], [[5k2d]] – hA2AR/cytochrome b562 <br />
 
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[[5iu4]], [[5iu7]], [[5iu8]], [[5iua]], [[5iub]] – hA2AR/cytochrome b562 (mutant) + inhibitor<br />
 
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[[4ug2]], [[4uhr]] – hA2AR (mutant) + inhibitor<br />
 
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[[5g53]] – hA2AR + G protein <br />
 
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[[3qak]] – hA2AR/lysozyme + agonist <br />
 
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[[2ydo]] – hA2AR (mutant) + adenosine<br />
 
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[[2ydv]], [[5wf5]], [[5wf6]] – hA2AR (mutant) + agonist<br />
 
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[[3pwh]], [[3rey]], [[3rfm]], [[3uza]], [[3uzc]] – hA2AR (mutant) + antagonist<br />
 
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[[3rfm]] – hA2AR (mutant) + caffeine<br />
 
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[[3vg9]], [[3vga]] – hA2AR (mutant) + antibody<br />
 
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[[5jtb]], [[5nlx]], [[5nm2]], [[5nm4]], [[5uvi]], [[5vra]] – hA2AR/cytochrome b562 <br />
 
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[[5olg]], [[5olh]], [[5olo]], [[5olv]], [[5olz]], [[5om1]], [[5om4]] – hA2AR/cytochrome b562 (mutant) <br />
 
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[[4eiy]] – hA2AR/cytochrome b562 + antagonist <br />
 
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[[5uig]], [[6aqf]] – hA2AR/cytochrome b562 (mutant) + antagonist <br />
 
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[[5mzj]] – hA2AR/cytochrome b562 (mutant) + theophylline <br />
 
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[[5mzp]] – hA2AR/cytochrome b562 (mutant) + caffeine <br />
 
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[[5n2r]] – hA2AR/cytochrome b562 (mutant) + xanthine derivative <br />
 
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[[6gdg]] – hA2AR/TrxA + transducing β + G γ-I + adenylate cyclase-stimulating G α + antibody – Cryo EM<br />
 
== References ==
== References ==
<references/>
<references/>
[[Category:Topic Page]]
[[Category:Topic Page]]

Revision as of 09:12, 28 February 2019

Human A2AR (mutant) complex with adenosine 2ydo

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References

  1. Lebon G, Warne T, Edwards PC, Bennett K, Langmead CJ, Leslie AG, Tate CG. Agonist-bound adenosine A(2A) receptor structures reveal common features of GPCR activation. Nature. 2011 May 18. PMID:21593763 doi:10.1038/nature10136
  2. Lazarus M, Shen HY, Cherasse Y, Qu WM, Huang ZL, Bass CE, Winsky-Sommerer R, Semba K, Fredholm BB, Boison D, Hayaishi O, Urade Y, Chen JF. Arousal effect of caffeine depends on adenosine A2A receptors in the shell of the nucleus accumbens. J Neurosci. 2011 Jul 6;31(27):10067-75. doi: 10.1523/JNEUROSCI.6730-10.2011. PMID:21734299 doi:http://dx.doi.org/10.1523/JNEUROSCI.6730-10.2011

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