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=== Before Activation ===
=== Before Activation ===
The culmination of different motifs observed in MRGPRX2 compared to other class A GPCRs leads to external membrane ligand binding. The MRGPRX2 GPCR undergoes a much smaller conformational change upon ligand binding compared to other Class A GPCRs due to surface level binding versus deep helix binding. This contrast is represented in the photo below to show the unbound and bound transmembrane proteins of MRGPRX2 and 5-HT2A.  
The culmination of different motifs observed in MRGPRX2 compared to other class A GPCRs leads to external membrane ligand binding. The MRGPRX2 GPCR undergoes a much smaller conformational change upon ligand binding compared to other Class A GPCRs due to surface level binding versus deep helix binding. This contrast is represented in the photo below to show the unbound and bound transmembrane proteins of MRGPRX2 and 5-HT2A.  
[[Image:Screen Shot 2022-03-282 at 6.59.44 PM.png|500px|center|thumb|'''Figure 10.''' Overlay of unbound (transparent) and bound (opaque) transmembrane proteins of both MRGRPX2 (left) and 5-HT2AR (right).]]
[[Image:Screen Shot 2022-03-282 at 6.59.44 PM.png|500px|center|thumb|'''Figure 8.''' Overlay of unbound (transparent) and bound (opaque) transmembrane proteins of both MRGRPX2 (left) and 5-HT2AR (right).]]


=== After Activation ===
=== After Activation ===
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=== Clinical Relevance ===
=== Clinical Relevance ===
Many medications commonly list chronic skin itching or inflammatory responses as side effects, such as nateglinide, an anti-diabetic drug <ref name= "Cao" />. Other drugs that have been known to trigger allergic reactions and even anaphylactic responses are opioids morphine or codeine<ref name= "Cao" />, which could explain anaphylactic responses to anesthetics seen in some patients<ref name="McNeil" />. Upon analysis of these drugs, they share many structural similarities that are known to bind to the sub-pockets in MRGPRX2, shown in TABLE **, which is a possible explanation for the unwanted itch and inflammation responses produced in some patients when administering these drugs <ref name="McNeil" /><ref name= "Cao" />.
[[Image:Activating_drugs.png |400px|right|thumb|'''Figure 9.''' Common prescriptions that are tied to adverse itching side effects include nateglinide, morphine, and codeine. These drugs have structural similarities to known ligands for the MRGPRX2 receptor, and can lead to MRGPRX2 activation.]]
Many medications commonly list chronic skin itching or inflammatory responses as side effects, such as [https://pubchem.ncbi.nlm.nih.gov/compound/Nateglinide nateglinide], an anti-diabetic drug <ref name= "Cao" />. Other prescribed medications that list itching as a possible side effect are [https://pubchem.ncbi.nlm.nih.gov/compound/Atracurium#section=2D-Structure Atracurium], [https://pubchem.ncbi.nlm.nih.gov/compound/441290 Rocuronium], [https://pubchem.ncbi.nlm.nih.gov/compound/2764 Ciprofloxacin], and [https://pubchem.ncbi.nlm.nih.gov/compound/149096 Levofloxacin]<ref name="Navines-Ferrer">PMID:30072729</ref>, all of which are tied to MRGPRX2 activation.
Other drugs that have been known to trigger allergic reactions and even anaphylactic responses are opioids [https://pubchem.ncbi.nlm.nih.gov/compound/Morphine morphine] or [https://pubchem.ncbi.nlm.nih.gov/compound/5284371 codeine]<ref name= "Cao" />, which could explain anaphylactic responses to anesthetics seen in some patients<ref name="McNeil" />. Upon analysis of these drugs, they share many structural similarities that are known to bind to the sub-pockets in MRGPRX2, shown in '''Figure 9''', which is a possible explanation for the unwanted itch and inflammation responses produced in some patients when administering these drugs <ref name="McNeil" /><ref name= "Cao" />.


Possible treatments for these unwanted side effects of drugs can be developed by understanding the mechanism of the MRGPRX2 receptor. Research on Cortistatin-14, an endogenous neuropeptide, has shown that it has antiinflammatory properties because of how it binds to the MRGPRX2 receptor <ref name= "Gonzalez-Rey">PMID: 16492802</ref>. Additionally, Osthole, an extract from Cnidium monnieri plants, also known as Monnier's snowparsley, demonstrates similar MRGPRX2 inhibition because of its structural similarity to many known ligands for this receptor, and could possibly be used as a treatment option for adverse allergic reactions to commonly prescribed drugs (donstralta). More research on MRGPRX2 can open the door for the development of drugs that avoid activation of the MRGPRX2 receptor, or possible treatments for excessive inflammation and allergic reactions.  
Possible treatments for these unwanted side effects of drugs can be developed by understanding the mechanism of the MRGPRX2 receptor. Research on Cortistatin-14, an endogenous neuropeptide, has shown that it has antiinflammatory properties because of how it binds to the MRGPRX2 receptor <ref name= "Gonzalez-Rey">PMID: 16492802</ref>. Additionally, Osthole, an extract from Cnidium monnieri plants, also known as Monnier's snowparsley, demonstrates similar MRGPRX2 inhibition because of its structural similarity to many known ligands for this receptor, and could possibly be used as a treatment option for adverse allergic reactions to commonly prescribed drugs (donstralta). More research on MRGPRX2 can open the door for the development of drugs that avoid activation of the MRGPRX2 receptor, or possible treatments for excessive inflammation and allergic reactions.  
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Because of how some drugs initiate an unwanted itch response,  
Because of how some drugs initiate an unwanted itch response,  
MRGPRX2 has been identified as a potential target for drugs either involved in the inflammatory response or to mediate drugs from causing an unwanted reaction such as [https://pubchem.ncbi.nlm.nih.gov/compound/Atracurium#section=2D-Structure Atracurium], [https://pubchem.ncbi.nlm.nih.gov/compound/441290 Rocuronium], [https://pubchem.ncbi.nlm.nih.gov/compound/2764 Ciprofloxacin], and [https://pubchem.ncbi.nlm.nih.gov/compound/149096 Levofloxacin]<ref name="Navines-Ferrer">PMID:30072729</ref>. These drugs have similarly charged regions which may interact with sub-pockets 1 and/or 2. By binding these target drugs, MRGPRX2 can elicit or prevent a response to aid with itch-related side effects.
MRGPRX2 has been identified as a potential target for drugs either involved in the inflammatory response or to mediate drugs from causing an unwanted reaction such as  
 
These drugs have similarly charged regions which may interact with sub-pockets 1 and/or 2. By binding these target drugs, MRGPRX2 can elicit or prevent a response to aid with itch-related side effects.


[[Image:Screen Shot 2022-03-29 at 10.48.36 AM.png|500px|center|thumb|Schematic representation of cellular response]]
[[Image:Screen Shot 2022-03-29 at 10.48.36 AM.png|500px|center|thumb|Schematic representation of cellular response]]

Revision as of 19:42, 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