Mu Opioid Receptor: Difference between revisions

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== Mu Opioid Receptor==
== Mu Opioid Receptor==
<StructureSection load='4n6h' size='340' side='right' caption='Chimera of E. coli cytochrome B562 and human Delta Opioid 7TM Receptor complex with oleate, tartarate, naltrindole, oleate derivative and Na+ ion (PDB code [[4n6h]])' scene=''>
<StructureSection load='4n6h' size='340' side='right' caption='Chimera of human Delta Opioid 7TM Receptor and E. coli cytochrome B562 in complex with oleate, tartrate, naltrindole, oleate derivative and Na+ ion (PDB code [[4n6h]])' scene=''>
Opioid receptors are G-protein coupled receptors (GPCR), which bind endogenous opioid peptide neurotransmitters (such as enkephalins and endorphins) and exogenous synthetic opiate drugs (such as morphine, codeine, and heroin) as ligands to hinder pain-signaling in the brain, peripheral nerves, and digestive tract.  μ-opioid receptors are one of the four major classes of opioid receptors, which also includes δ-opioid receptors, κ-opioid receptors, and nociceptin opioid receptors.  The '''μ-opioid receptor''' MOR-1 is expressed by the gene OPRM1 in vertebrates. <ref>DOI: 10.1124/pr.112.007138</ref> MOR-1 has important implications as a target for pain relievers as well as a treatment for drug abuse.  
Opioid receptors are G-protein coupled receptors (GPCR), which bind endogenous opioid peptide neurotransmitters (such as enkephalins and endorphins) and exogenous synthetic opiate drugs (such as morphine, codeine, and heroin) as ligands to hinder pain-signaling in the brain, peripheral nerves, and digestive tract.  μ-opioid receptors are one of the four major classes of opioid receptors, which also includes δ-opioid receptors, κ-opioid receptors, and nociceptin opioid receptors.  The '''μ-opioid receptor''' MOR-1 is expressed by the gene OPRM1 in vertebrates. <ref>DOI: 10.1124/pr.112.007138</ref> MOR-1 has important implications as a target for pain relievers as well as a treatment for drug abuse.  


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In the presence of a signaling molecule, an active G protein will have GTP bound, to promote an intracellular signaling cascade.  After the G protein has transduced the signal, it exchanges GTP for GDP and becomes inactive until another signaling molecule binds to the GPCR.   
In the presence of a signaling molecule, an active G protein will have GTP bound, to promote an intracellular signaling cascade.  After the G protein has transduced the signal, it exchanges GTP for GDP and becomes inactive until another signaling molecule binds to the GPCR.   


In the case of the μ-opioid receptor, the binding of an opioid signaling molecule induces a <scene name='78/786661/Mor_on_off/2'>conformational change</scene> in the receptor that activates an inhibitory G-protein (Gαi/o).  This results in the dissociation of the G-protein complex.  The Gα subunit then inhibits adenylyl cyclase.  The Gβγ subunit acts to inhibit Ca2+ channels while activing K+ channels.  While much has been learned about μ-opioid receptors since their discovery in 1973, there is still much that is unknown about their structure and <scene name='78/786661/Mor_on_off/3'>activation mechanism</scene>.  Thus, further research into this area is needed. <ref>DOI: 10.1016/j.str.2011.08.003</ref>
In the case of the μ-opioid receptor, the binding of an opioid signaling molecule induces a <scene name='78/786661/Mor_on_off/2'>conformational change</scene> in the receptor that activates an inhibitory G-protein (Gαi/o).  This results in the dissociation of the G-protein complex.  The Gα subunit then inhibits adenylyl cyclase.  The Gβγ subunit acts to inhibit Ca2+ channels while activing K+ channels.  While much has been learned about μ-opioid receptors since their discovery in 1973, there is still much that is unknown about their structure and <scene name='78/786661/Mor_on_off/4'>activation mechanism</scene>.  Thus, further research into this area is needed. <ref>DOI: 10.1016/j.str.2011.08.003</ref>


== Disease ==
== Disease ==

Revision as of 02:26, 17 September 2019

Mu Opioid Receptor

Chimera of human Delta Opioid 7TM Receptor and E. coli cytochrome B562 in complex with oleate, tartrate, naltrindole, oleate derivative and Na+ ion (PDB code 4n6h)

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References

Proteopedia Page Contributors and Editors (what is this?)

Jamie Heet, Michal Harel, Karsten Theis