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The interaction between the mu opioid receptor and filamin A
Eric J Simon1, Irma Onoprishvili
1Departments of Psychiatry and Pharmacology, NYU School of Medicine, 550 First Avenue, New York, NY 10016, USA. eric.simon@nyu.edu
Abstract:
Our laboratory embarked on research to discover proteins the interaction of which with the mu opioid receptor (MOPr) is required for its function and regulation. We performed yeast two-hybrid screens, using the carboxy tail of the human MOPr as bait and a human brain library. This yielded a number of proteins that seemed to bind to the MOPr C-tail. The one we chose to study in detail was filamin A (FLNA). Evidence was obtained that there was indeed protein-protein binding between the C-tail of MOPr and FLNA. A human melanoma cell line (M2) lacking the gene for FLNA and a control cell line (A7) which differed from M2 only in having been transfected with the gene for FLNA and expressing the FLNA protein were made available to us. We transfected these cell lines with the gene for MOPr and used them in our studies. The absence of FLNA strongly reduced MOPr downregulation as well as desensitization of adenylyl cyclase inhibition and G protein activation. A recent finding, published here for the first time, is that FLNA is required for the activation by mu opioid agonists of the MAP kinase p38. Deletion studies indicated that the MOPr binding site on FLNA is in the 24th repeat, close to its C-terminal. It was further found that FLNA lacking the N-terminal actin binding domain is as capable as full length FLNA to restore cells to control status, suggesting that actin binding is not required. A surprising finding was that upregulation of MOPr by morphine and some agonist analogs occurs in M2 cells lacking FLNA, whereas normal receptor downregulation takes place in A7 cells.
Insights
Filamin A (FLNA) is essential for mu opioid receptor (MOPr) function, regulating its downregulation, signaling, and MAP kinase activation. FLNA binding to MOPr is crucial for these processes.
Area of Science:
- Molecular pharmacology
- Cell biology
- Neuroscience
Background:
- The mu opioid receptor (MOPr) plays a critical role in pain perception and reward pathways.
- Understanding MOPr regulation and function requires identifying interacting proteins.
- Filamin A (FLNA) is a cytoskeletal protein involved in various cellular processes.
Purpose of the Study:
- To identify proteins interacting with the mu opioid receptor (MOPr) C-tail.
- To investigate the role of filamin A (FLNA) in MOPr function and regulation.
- To elucidate the specific domains of FLNA involved in MOPr interaction.
Main Methods:
- Yeast two-hybrid screens using MOPr C-tail bait and a human brain library.
- Utilized FLNA-deficient (M2) and FLNA-expressing (A7) melanoma cell lines.
- Transfected cell lines with MOPr and assessed receptor downregulation, signaling, and MAP kinase activation.
Main Results:
- Filamin A (FLNA) was identified as a binding partner for the MOPr C-tail.
- Absence of FLNA significantly reduced MOPr downregulation, adenylyl cyclase inhibition, and G protein activation.
- FLNA is required for mu opioid agonist-induced activation of MAP kinase p38.
- The MOPr binding site on FLNA is located in the 24th repeat, near the C-terminus.
- FLNA's actin-binding domain is not essential for restoring MOPr function.
Conclusions:
- Filamin A (FLNA) is a key regulator of mu opioid receptor (MOPr) function and signaling.
- FLNA mediates MOPr downregulation, desensitization, and MAP kinase activation.
- Specific interactions between MOPr and FLNA, independent of actin binding, are critical for receptor regulation.
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