Testgp: Difference between revisions
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== G-Protein Activation Cycle == | == G-Protein Activation Cycle == | ||
[[Image:Img.JPG| | [[Image:Img.JPG|600px|G protein cycle for the β2AR–Gs complex. Reprinted by permission from Macmillan Publishers Ltd on behalf of Cancer Research UK: Nature 477, 549–555, copyright 2011]] | ||
The figure shows the G Protein cycle<ref>doi:10.1038/nature10361</ref> - an extracellular agonist binding to the β2AR leads to <scene name='70/701430/Receptor_morphing_animation/2'>conformational rearrangements</scene> of the cytoplasmic ends of transmembrane segments that enable the Gs heterotrimer to bind the receptor. GDP is released from the α subunit upon formation of β2AR–Gs complex. The GTP binds to the nucleotide-free α subunit resulting in dissociation of the α and βγ subunits from the receptor. The subunits regulate their respective effector proteins adenylyl cyclase (AC) and Ca2+ channels. The Gs heterotrimer reassembles from α and βγ subunits following hydrolysis of GTP to GDP in the α subunit. | The figure shows the G Protein cycle<ref>doi:10.1038/nature10361</ref> - an extracellular agonist binding to the β2AR leads to <scene name='70/701430/Receptor_morphing_animation/2'>conformational rearrangements</scene> of the cytoplasmic ends of transmembrane segments that enable the Gs heterotrimer to bind the receptor. GDP is released from the α subunit upon formation of β2AR–Gs complex. The GTP binds to the nucleotide-free α subunit resulting in dissociation of the α and βγ subunits from the receptor. The subunits regulate their respective effector proteins adenylyl cyclase (AC) and Ca2+ channels. The Gs heterotrimer reassembles from α and βγ subunits following hydrolysis of GTP to GDP in the α subunit. | ||
{{Template:Button Toggle Animation2}} | {{Template:Button Toggle Animation2}} | ||
A previous structure of a GTPγS bound (i.e. active, "turned on") Gαs protein showed that both domains are involved in nucleotide binding, as the nucleotide-binding pocket of the Gαs subunit is formed by the interface between GαsRas and GαsAH<ref>doi:10.1126/science.278.5345.1943</ref>. It was also previously known that the GsαAH domain has a variable position relative to the GsαRas domain between this GTP bound (active) state and the nucleotide free state<ref>DOI:10.1126/science.8266082</ref><ref>doi:10.1073/pnas.1105810108</ref><ref>doi:10.1073/pnas.1113645108</ref><ref>doi:10.1038/nature10488</ref>. However, the β2AR–Gs complex structure of the receptor attached to the empty (no guanosine phosphate attached) G protein enabled comparing it to the active (GTP bound) structure and by that showing <scene name='70/701430/Gamorph/2'>how large this displacement is</scene> - this is probably the most surprising observation arising from the β2AR–Gs complex. | |||
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==See Also== | |||
*[[Adrenergic receptor|Adrenergic receptor]] | |||
*[[Antibody|Antibody]] | |||
*[[Beta-2 Adrenergic Receptor|Beta-2 Adrenergic Receptor]] | |||
*[[G protein-coupled receptor|G protein-coupled receptor]] | |||
*[[GTP-binding protein|GTP-binding protein]] | |||
*[[Guanine nucleotide-binding protein|Guanine nucleotide-binding protein]] | |||
*[[Hormone|Hormone]] | |||
*[[Lysozyme 3D structures|Lysozyme 3D structures]] | |||
*[[Nobel Prizes for 3D Molecular Structure|Nobel Prizes for 3D Molecular Structure]] | |||
*[[Suggestions for new articles|Suggestions for new articles]] | |||
*[[Transducin|Transducin]] | |||
*[[User:Wayne Decatur/UNH BCHEM833 Structural Analysis Workshop Session Fall 2012|User:Wayne Decatur/UNH BCHEM833 Structural Analysis Workshop Session Fall 2012]] | |||
*[[User:Wayne Decatur/UNH BCHEM833 Structural Proteomics Introductory Lecture Fall 2012|User:Wayne Decatur/UNH BCHEM833 Structural Proteomics Introductory Lecture Fall 2012]] | |||
*[[3sn6|3SN6]] | |||
</StructureSection> | |||
== References == | |||
<references/> | |||
Revision as of 15:19, 25 February 2021
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