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== GPCR Structure ==
== GPCR Structure ==
The MRGPRX2 receptor structure was determined by cryo-electron microscopy (cryo-EM) <ref name= "Cao" /> <ref name= "Yang" />. Despite MRGPRX2’s novel characteristics, these structures still confirmed MRGPRX2 classification as an A-family GPCR. MRGPRX2 therefore shares the same general structural domains of all GPCR’s. This includes a <scene name='90/904305/Structure_overview_red/3'>transmembrane domain</scene> that interacts with a heterotrimeric <scene name='90/904305/Structure_overview_gprotein/2'>G-protein</scene> domain, consisting of <scene name='90/904305/Structure_overview_alpha/2'>alpha</scene>, <scene name='90/904305/Structure_overview_beta/1'>beta</scene>, and <scene name='90/904305/Structure_overview_gamma/1'>gamma</scene> subunits. The G-protein serves as the intracellular relay for ligand binding to the receptor. In preparing the protein sample, MRGPRX2 was prepared with an <scene name='90/904305/Antibody_representation/1'>antibody scFv16</scene> in order to stabilize the transmembrane domain for proper imaging. For simplicity and to focus on the MRGPRX2 receptor, the antibody has been removed in structural scenes.
The MRGPRX2 receptor structure was determined by cryo-electron microscopy (cryo-EM) <ref name= "Cao" /> <ref name= "Yang" />. Despite MRGPRX2’s novel characteristics, these structures still confirmed MRGPRX2 classification as an A-family GPCR. MRGPRX2 therefore shares the same general structural domains of all GPCR’s. This includes a <scene name='90/904305/Structure_overview_red/3'>transmembrane domain</scene> that interacts with a heterotrimeric <scene name='90/904305/Structure_overview_gprotein/2'>G-protein</scene> domain, consisting of <scene name='90/904305/Structure_overview_alpha/2'>alpha</scene>, <scene name='90/904305/Structure_overview_beta/2'>beta</scene>, and <scene name='90/904305/Structure_overview_gamma/1'>gamma</scene> subunits. The G-protein serves as the intracellular relay for ligand binding to the receptor. In preparing the protein sample, MRGPRX2 was prepared with an <scene name='90/904305/Antibody_representation/1'>antibody scFv16</scene> in order to stabilize the transmembrane domain for proper imaging. For simplicity and to focus on the MRGPRX2 receptor, the antibody has been removed in structural scenes.


=== Transmembrane Domain ===
=== Transmembrane Domain ===
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=== G-Protein ===
=== G-Protein ===
[https://proteopedia.org/wiki/index.php/G_protein GTP-binding proteins], also known as G-proteins, are heterotrimeric complexes consisting of <scene name=''90/904305/Structure_overview_alpha/2'>alpha</scene>, <scene name='90/904305/Structure_overview_beta/1'>beta</scene>, and <scene name='90/904305/Structure_overview_gamma/1'>gamma</scene> subunits that interact with the intracellular transmembrane region at an  <scene name='90/904306/Interface_2/1'>interface</scene> ( '''Figure 2b'''). G-proteins are responsible for transmitting extracellular signals into the cell upon activation. Activation leads to a substitution of GDP with GTP within the alpha subunit, causing the alpha subunit to disassociate from the beta and gamma subunits to initiate an intracellular signaling cascade.  There are different families of G-alpha subunits, Gαi, Gαs, Gα12/13, and Gαq <ref name="Kamato">PMID: 26664886</ref>. MRGPRX2 binds to both Gαi and Gαq subunits with nearly identical structures despite slightly different amino acids present ( '''Figure 2a''') <ref name= "Cao" /> <ref name= "Yang" />. Throughout this page, MGPRX2 is always shown with Gq. The major difference between the Gq and Gi bound structures comes from one amino acid difference (valine on Gq versus phenylalanine on Gi) that pushes the Gi subunit 2Å away from the arginine residue on helix 6 of the transmembrane protein.
[https://proteopedia.org/wiki/index.php/G_protein GTP-binding proteins], also known as G-proteins, are heterotrimeric complexes consisting of <scene name=''90/904305/Structure_overview_alpha/2'>alpha</scene>, <scene name='90/904305/Structure_overview_beta/2'>beta</scene>, and <scene name='90/904305/Structure_overview_gamma/1'>gamma</scene> subunits that interact with the intracellular transmembrane region at an  <scene name='90/904306/Interface_2/1'>interface</scene> ( '''Figure 2b'''). G-proteins are responsible for transmitting extracellular signals into the cell upon activation. Activation leads to a substitution of GDP with GTP within the alpha subunit, causing the alpha subunit to disassociate from the beta and gamma subunits to initiate an intracellular signaling cascade.  There are different families of G-alpha subunits, Gαi, Gαs, Gα12/13, and Gαq <ref name="Kamato">PMID: 26664886</ref>. MRGPRX2 binds to both Gαi and Gαq subunits with nearly identical structures despite slightly different amino acids present ( '''Figure 2a''') <ref name= "Cao" /> <ref name= "Yang" />. Throughout this page, MGPRX2 is always shown with Gq. The major difference between the Gq and Gi bound structures comes from one amino acid difference (valine on Gq versus phenylalanine on Gi) that pushes the Gi subunit 2Å away from the arginine residue on helix 6 of the transmembrane protein.


[[Image:Gq and gi overlay.png|500px|center|thumb|'''Figure 2a.''' Overlay of MGPRX2-Gq (red-dark blue) and MGPRX2-Gi (cyan-yellow). '''Figure 2b.''' Important residues involved in the interface between MGPRX2 and Gq/ Gi subunits. Arrow pointing to the major difference between the interfaces, which comes from the final C-terminus residue on the G-alpha subunit. In Gq, there is a valine while in Gi, there is a phenylalanine. This pushes the Gi subunit 2Å away from the arginine residue on helix 6 of the transmembrane protein.]]
[[Image:Gq and gi overlay.png|500px|center|thumb|'''Figure 2a.''' Overlay of MGPRX2-Gq (red-dark blue) and MGPRX2-Gi (cyan-yellow). '''Figure 2b.''' Important residues involved in the interface between MGPRX2 and Gq/ Gi subunits. Arrow pointing to the major difference between the interfaces, which comes from the final C-terminus residue on the G-alpha subunit. In Gq, there is a valine while in Gi, there is a phenylalanine. This pushes the Gi subunit 2Å away from the arginine residue on helix 6 of the transmembrane protein.]]

Revision as of 20:03, 16 April 2022

MRGPRX2 Human Itch G-Protein Coupled Receptor (GPCR)

Mas-Related G-Protein Coupled Receptor (MRGPRX2) visualized by X-ray crystallography. The transmembrane domain (red) contains 7 transmembrane helices, and the G-protein consists of 3 different domains: alpha (blue), beta (magenta), and gamma (yellow). PDB:7s8l

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References