Sandbox Reserved 1701: Difference between revisions

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The extracellular region of the 7 transmembrane domain forms a single [https://en.wikipedia.org/wiki/Binding_site binding pocket] with <scene name='90/904305/Subpockets_1_and_2/4'>two sub-pockets</scene>. Sub-pocket 1 is negatively charged due to negatively charged <scene name='90/904305/Subpockets_1_and_2_d_and_e/2'>aspartate and glutamate</scene> residues (Asp-184 and Glu-164), while sub-pocket 2 contains hydrophobic amino acids which contribute to hydrophobic interactions between the ligand and protein. The intracellular region ('''Figure 1''') is what connects the transmembrane helices with the G-protein.  
The extracellular region of the 7 transmembrane domain forms a single [https://en.wikipedia.org/wiki/Binding_site binding pocket] with <scene name='90/904305/Subpockets_1_and_2/4'>two sub-pockets</scene>. Sub-pocket 1 is negatively charged due to negatively charged <scene name='90/904305/Subpockets_1_and_2_d_and_e/2'>aspartate and glutamate</scene> residues (Asp-184 and Glu-164), while sub-pocket 2 contains hydrophobic amino acids which contribute to hydrophobic interactions between the ligand and protein. The intracellular region ('''Figure 1''') is what connects the transmembrane helices with the G-protein.  


This GPCR has been modeled both as MRGPRX2 and MRGPRX4<ref name="Cao">PMID: 34789874</ref><ref name="Yang">PMID: 34789875</ref>, though much of this page focusses on MRGPRX2. X4 is found to mediate cholestatic itch compared to X2's regulation of mast cell degranulation and hypersensitivity itch-reactions<ref name="Cao">PMID: 34789874</ref>. X4 and X2 demonstrate nearly the same structural differences compared to that of other class A GPCRs. Interestingly, X4 can interact with negatively charged bile acids and is insensitive to the common X2 cationic agonists discussed later ('''Figure 7''').  
This GPCR has been modeled both as MRGPRX2 and MRGPRX4<ref name="Cao">PMID: 34789874</ref><ref name="Yang">PMID: 34789875</ref>, though much of this page focusses on MRGPRX2. X4 is found to mediate cholestatic itch compared to X2's regulation of mast cell degranulation and hypersensitivity itch-reactions<ref name="Cao">PMID: 34789874</ref>. X4 and X2 demonstrate nearly the same structural differences compared to that of other class A GPCRs. Interestingly, X4 can interact with negatively charged bile acids and is insensitive to the common X2 cationic agonists discussed later ('''Figure 7''')<ref name="Yu">PMID: 31500698</ref>.  


=== G-Protein ===
=== G-Protein ===
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== Function ==
== Function ==
[[Image:Screen Shot 2022-04-162 at 2.49.26 PM.png|420px|right|thumb|'''Figure 8.'''Schematic representation of cellular response]]
[[Image:Screen Shot 2022-04-162 at 2.49.26 PM.png|300px|right|thumb|'''Figure 8.'''Schematic representation of cellular response]]
GPCRs undergo a conformational change in their 7TMD region upon ligand binding. This signal is then transduced to the G-protein allowing for downstream responses due to <scene name='90/904306/Interface_2/1'>interactions</scene> between the alpha subunit of the G-protein and the transmembrane protein which activates g-protein by GTP exchange. This downstream response may be in the form of release of small granules which can be received by a receptor to initiate a [https://proteopedia.org/wiki/index.php/Neurotransmitters#Serotonin_receptors%20Serotonin%20receptors pathological response] ('''Figure 8''')<ref name="Porebski">PMID: 30619367</ref>.
GPCRs undergo a conformational change in their 7TMD region upon ligand binding. This signal is then transduced to the G-protein allowing for downstream responses due to <scene name='90/904306/Interface_2/1'>interactions</scene> between the alpha subunit of the G-protein and the transmembrane protein which activates g-protein by GTP exchange. This downstream response may be in the form of release of small granules which can be received by a receptor to initiate a [https://proteopedia.org/wiki/index.php/Neurotransmitters#Serotonin_receptors%20Serotonin%20receptors pathological response] ('''Figure 8''')<ref name="Porebski">PMID: 30619367</ref>.
=== Before Activation ===
=== Before Activation ===

Revision as of 00:42, 19 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