Testgp
From Proteopedia
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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}} | ||
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+ | 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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References
- ↑ https://en.wikipedia.org/wiki/G_protein
- ↑ https://en.wikipedia.org/wiki/GTPase
- ↑ https://en.wikipedia.org/wiki/Small_GTPase
- ↑ https://en.wikipedia.org/wiki/Heterotrimeric_G_protein
- ↑ Hurowitz EH, Melnyk JM, Chen YJ, Kouros-Mehr H, Simon MI, Shizuya H. Genomic characterization of the human heterotrimeric G protein alpha, beta, and gamma subunit genes. DNA Res. 2000 Apr 28;7(2):111-20. doi: 10.1093/dnares/7.2.111. PMID:10819326 doi:http://dx.doi.org/10.1093/dnares/7.2.111
- ↑ Rasmussen SG, DeVree BT, Zou Y, Kruse AC, Chung KY, Kobilka TS, Thian FS, Chae PS, Pardon E, Calinski D, Mathiesen JM, Shah ST, Lyons JA, Caffrey M, Gellman SH, Steyaert J, Skiniotis G, Weis WI, Sunahara RK, Kobilka BK. Crystal structure of the beta2 adrenergic receptor-Gs protein complex. Nature. 2011 Jul 19;477(7366):549-55. doi: 10.1038/nature10361. PMID:21772288 doi:10.1038/nature10361
- ↑ doi: https://dx.doi.org/10.1126/science.278.5345.1943
- ↑ Markby DW, Onrust R, Bourne HR. Separate GTP binding and GTPase activating domains of a G alpha subunit. Science. 1993 Dec 17;262(5141):1895-901. doi: 10.1126/science.8266082. PMID:8266082 doi:http://dx.doi.org/10.1126/science.8266082
- ↑ Van Eps N, Preininger AM, Alexander N, Kaya AI, Meier S, Meiler J, Hamm HE, Hubbell WL. Interaction of a G protein with an activated receptor opens the interdomain interface in the alpha subunit. Proc Natl Acad Sci U S A. 2011 Jun 7;108(23):9420-4. doi:, 10.1073/pnas.1105810108. Epub 2011 May 23. PMID:21606326 doi:http://dx.doi.org/10.1073/pnas.1105810108
- ↑ Westfield GH, Rasmussen SG, Su M, Dutta S, DeVree BT, Chung KY, Calinski D, Velez-Ruiz G, Oleskie AN, Pardon E, Chae PS, Liu T, Li S, Woods VL Jr, Steyaert J, Kobilka BK, Sunahara RK, Skiniotis G. Structural flexibility of the G alpha s alpha-helical domain in the beta2-adrenoceptor Gs complex. Proc Natl Acad Sci U S A. 2011 Sep 20;108(38):16086-91. doi:, 10.1073/pnas.1113645108. Epub 2011 Sep 13. PMID:21914848 doi:http://dx.doi.org/10.1073/pnas.1113645108
- ↑ Chung KY, Rasmussen SG, Liu T, Li S, DeVree BT, Chae PS, Calinski D, Kobilka BK, Woods VL Jr, Sunahara RK. Conformational changes in the G protein Gs induced by the beta2 adrenergic receptor. Nature. 2011 Sep 28;477(7366):611-5. doi: 10.1038/nature10488. PMID:21956331 doi:10.1038/nature10488