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Updated: Jun 22, 2026

Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
Secretin receptor oligomers form intracellularly during maturation through receptor core domains
Cayle S Lisenbee1, Laurence J Miller
1Cancer Center and Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic, Scottsdale, Arizona 85259, USA.
Abstract:
Oligomerization of numerous G protein-coupled receptors has been documented, including the prototypic family B secretin receptor. The clinical significance of oligomerization of this receptor became clear with the recent observation that a misspliced form present in pancreatic cancer could associate with the wild-type receptor and act as a dominant negative inhibitor of its normal growth inhibitory function. Our goal was to explore the molecular mechanism of this interaction using bioluminescence (BRET) and fluorescence (FRET) resonance energy transfer and fluorescence microscopy with a variety of receptor constructs tagged with luciferase or cyan or yellow fluorescent proteins. BRET signals comparable to those obtained from cells coexpressing differentially tagged wild-type receptors were observed for similarly tagged secretin receptors in which all or part of the amino-terminal domain was deleted. As expected, neither of these constructs bound secretin, and only the partially truncated construct sorted to the plasma membrane. Receptors lacking the majority of the carboxyl-terminal domain, including that important for phosphorylation-mediated desensitization, also produced BRET signals above background. These findings suggested that the receptor's membrane-spanning core is responsible for secretin receptor oligomerization. Interestingly, alanine substitutions for a -GxxxG- helix interaction motif in transmembrane segment 7 created nonfunctional receptors that were capable of forming oligomers. Furthermore, treatment of receptor-expressing cells with brefeldin A did not eliminate the BRET signals, and morphologic FRET experiments confirmed the expected subcellular localizations of receptor oligomers. We conclude that secretin receptor oligomerization occurs through -GxxxG- motif-independent interactions of transmembrane segments during the maturation of nascent molecules.
Insights
Secretin receptor oligomerization, crucial for cell growth regulation, involves interactions within the receptor's transmembrane segments. This process occurs independently of a specific helix motif during receptor maturation.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Oligomerization is a known phenomenon for G protein-coupled receptors, including the family B secretin receptor.
- A misspliced secretin receptor variant in pancreatic cancer can inhibit wild-type receptor function, highlighting the clinical importance of oligomerization.
Purpose of the Study:
- To investigate the molecular mechanisms underlying secretin receptor oligomerization.
- To identify the specific domains and interactions involved in secretin receptor self-association.
Main Methods:
- Bioluminescence (BRET) and fluorescence (FRET) resonance energy transfer techniques were employed.
- Fluorescence microscopy was used with receptor constructs tagged with luciferase or fluorescent proteins (cyan, yellow).
- Mutagenesis studies, including alanine substitutions in transmembrane segments, were performed.
Main Results:
- Secretin receptor oligomerization was observed even when the amino-terminal domain was deleted or truncated.
- Receptors lacking the carboxyl-terminal domain also showed oligomerization.
- Interactions involving the membrane-spanning core, independent of the -GxxxG- motif in transmembrane segment 7, were implicated in oligomerization.
- Oligomerization occurred during the maturation of nascent receptor molecules, as indicated by brefeldin A treatment and subcellular localization studies.
Conclusions:
- Secretin receptor oligomerization is primarily mediated by interactions within the transmembrane segments.
- The -GxxxG- motif in transmembrane segment 7 is not essential for secretin receptor oligomerization.
- Oligomerization is an integral part of the secretin receptor's maturation process.
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