User:Camille Gaudet/Sandbox 1
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== General Structure == | == General Structure == | ||
=== The Receptor and G Protein (GIPR) === | === The Receptor and G Protein (GIPR) === | ||
- | <scene name='10/1037488/Gip-r_noligand_noantibody/9'>GIP-R without GIP</scene> appears as a typical G-Protein Coupled Receptor, containing a <scene name='10/1037488/Gip-r_transmembrane/1'>transmembrane domain</scene> with seven helical passes and an <scene name='10/1037488/Gip-r_extracellular/1'>extracellular domain</scene>, where the ligand binds. These two domains comprise the <scene name='10/1037488/Gip-r_receptor-centered/6'>receptor</scene>. Intracellularly, the receptor is bound to a G-Protein which is comprised by the <scene name='10/1037488/Gip-r_galpha-centered/4'>G Alpha (Gs⍺iN18)</scene>, <scene name='10/1037488/Gip-r_gbeta-centered/ | + | <scene name='10/1037488/Gip-r_noligand_noantibody/9'>GIP-R without GIP</scene> appears as a typical G-Protein Coupled Receptor, containing a <scene name='10/1037488/Gip-r_transmembrane/1'>transmembrane domain</scene> with seven helical passes and an <scene name='10/1037488/Gip-r_extracellular/1'>extracellular domain</scene>, where the ligand binds. These two domains comprise the <scene name='10/1037488/Gip-r_receptor-centered/6'>receptor</scene>. Intracellularly, the receptor is bound to a G-Protein which is comprised by the <scene name='10/1037488/Gip-r_galpha-centered/4'>G Alpha (Gs⍺iN18)</scene>, <scene name='10/1037488/Gip-r_gbeta-centered/5'>G Beta (Gβ)</scene>, and <scene name='10/1037488/Gip-r_ggamma-centered/3'>G Gamma (Gγ)</scene> subunits, where the Beta and Gamma subunits typically [https://en.wikipedia.org/wiki/Dimerization_(chemistry) dimerize]. Upon binding of GIP to the receptor, the intracellular signaling cascade is initiated through Gs⍺iN18 stimulation of adenylyl cyclase and increased [cAMP]. |
=== Glucose-dependent Insulinotropic Polypeptide === | === Glucose-dependent Insulinotropic Polypeptide === | ||
- | The <scene name='10/1037488/Gip-bound/4'>GIP ligand</scene> binds to its receptor extracellularly, inserting itself [https://en.wikipedia.org/wiki/N-terminus N-terminus] down into the transmembrane and extracellular domains of the GIP receptor. The polypeptide is | + | The <scene name='10/1037488/Gip-bound/4'>GIP ligand</scene> binds to its receptor extracellularly, inserting itself [https://en.wikipedia.org/wiki/N-terminus N-terminus] down into the transmembrane and extracellular domains of the GIP receptor. The polypeptide is 42 residues in length and takes on a helical structure. |
=== Active Site === | === Active Site === |
Current revision
Glucose-dependent Insulinotropic Polypeptide Receptor
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References
- ↑ 1.0 1.1 1.2 Seino Y, Fukushima M, Yabe D. GIP and GLP-1, the two incretin hormones: Similarities and differences. J Diabetes Investig. 2010 Apr 22;1(1-2):8-23. PMID:24843404 doi:10.1111/j.2040-1124.2010.00022.x
- ↑ 2.0 2.1 2.2 2.3 Sun B, Willard FS, Feng D, Alsina-Fernandez J, Chen Q, Vieth M, Ho JD, Showalter AD, Stutsman C, Ding L, Suter TM, Dunbar JD, Carpenter JW, Mohammed FA, Aihara E, Brown RA, Bueno AB, Emmerson PJ, Moyers JS, Kobilka TS, Coghlan MP, Kobilka BK, Sloop KW. Structural determinants of dual incretin receptor agonism by tirzepatide. Proc Natl Acad Sci U S A. 2022 Mar 29;119(13):e2116506119. PMID:35333651 doi:10.1073/pnas.2116506119
- ↑ 3.0 3.1 Chavda VP, Ajabiya J, Teli D, Bojarska J, Apostolopoulos V. Tirzepatide, a New Era of Dual-Targeted Treatment for Diabetes and Obesity: A Mini-Review. Molecules. 2022 Jul 5;27(13):4315. PMID:35807558 doi:10.3390/molecules27134315
- ↑ 4.0 4.1 4.2 Zhao F, Zhou Q, Cong Z, Hang K, Zou X, Zhang C, Chen Y, Dai A, Liang A, Ming Q, Wang M, Chen LN, Xu P, Chang R, Feng W, Xia T, Zhang Y, Wu B, Yang D, Zhao L, Xu HE, Wang MW. Structural insights into multiplexed pharmacological actions of tirzepatide and peptide 20 at the GIP, GLP-1 or glucagon receptors. Nat Commun. 2022 Feb 25;13(1):1057. PMID:35217653 doi:10.1038/s41467-022-28683-0
Student Contributors
- Camille Gaudet
- Sara Kalkhoff