Molecular determinants of orexin receptor-arrestinubiquitin complex formation

Background and Purpose: The orexin system regulates a multitude of key physiological processes, particularly involving maintenance of metabolic homeostasis. Consequently, there is considerable potential for pharmaceutical development for the treatment of disorders from narcolepsy to metabolic syndro...

Full description

Bibliographic Details
Main Authors: Jaeger, Werner C, Seeber, Ruth M, Eidne, Karin A, Pfleger, Kevin DG
Format: Online
Language:English
Published: John Wiley & Sons Ltd 2014
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3904257/
Description
Summary:Background and Purpose: The orexin system regulates a multitude of key physiological processes, particularly involving maintenance of metabolic homeostasis. Consequently, there is considerable potential for pharmaceutical development for the treatment of disorders from narcolepsy to metabolic syndrome. It acts through the hormonal activity of two endogenous peptides, orexin A binding to orexin receptors 1 and 2 (OX1 and OX2) with similar affinity, and orexin B binding to OX2 with higher affinity than OX1 receptors. We have previously revealed data differentiating orexin receptor subtypes with respect to their relative stability in forming orexin receptor-arrestin-ubiquitin complexes measured by BRET. Recycling and cellular signalling distinctions were also observed. Here, we have investigated, using BRET, the molecular determinants involved in providing OX2 receptors with greater β-arrestin-ubiquitin complex stability.