4.6 Article

Differential Requirement of the Extracellular Domain in Activation of Class B G Protein-coupled Receptors

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 291, Issue 29, Pages 15119-15130

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M116.726620

Keywords

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Funding

  1. National Institutes of Health [DK071662, GM102545, GM104212]
  2. National Natural Science Foundation of China [31300245, 31300607]
  3. Van Andel Research Institute, Ministry of Science and Technology of China [2012ZX09301001, 2012CB910403, 2013CB910600, XDB08020303, 2013ZX09507001]
  4. Amway (China)
  5. National Health and Family Planning Commission [2012ZX09304-011, 2013ZX09401003-005, 2013ZX 09507001, 2013ZX09507-002]
  6. Shanghai Science and Technology Development Fund [15DZ2291600]
  7. Shanghai Science and Technology Committee [13ZR1447600]
  8. Shanghai Rising-Star Program [14QA1404300]

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G protein-coupled receptors (GPCRs) from the secretin-like (class B) family are key players in hormonal homeostasis and are important drug targets for the treatment of metabolic disorders and neuronal diseases. They consist of a large N-terminal extra cellular domain (ECD) and a transmembrane domain (TMD) with the GPCR signature of seven transmembrane helices. Class GPCRs are activated by peptide hormones with their C termini bound to the receptor ECD and their N termini bound to the TMD. It is thought that the ECD functions as an affinity trap to bind and localize the hormone to the receptor. This in turn would allow the hormone N terminus to insert into the TMD and induce conformational changes of the TMD to activate downstream signaling. In contrast to this prevailing model, we demonstrate that human class B GPCRs vary widely in their requirement of the ECD for activation. In one group, represented by corticotrophin-releasing factor receptor 1 (CRF1R), parathyroid hormone receptor (PTH1R), and pituitary adenylate cyclase activating polypeptide type 1 receptor (PAC1R), the ECD requirement for high affinity hormone binding can be bypassed by induced proximity and mass action effects, whereas in the other group, represented by glucagon receptor (GCGR) and glucagon-like peptide-1 receptor (GLP-1R), the LCD is required for signaling even when the hormone is covalently linked to the TMD. Furthermore, the activation of GLP-1R by small molecules that interact with the intracellular side of the receptor is dependent on the presence of its LCD, suggesting a direct role of the ECD in GLP-1R activation.

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