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.

Biochemistry
|July 6, 2006
PubMed

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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