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March 10, 2026Cell chemical biology0 citationsOpen Access

Cytoplasmic tail diversity determines the effector bias of the adhesion GPCR ADGRL2

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KGKrassimira GarbettCZChen ZhengJDJulia Drube

Key Points

  • The study investigates how variations in the intracellular tail of ADGRL2 affect signaling through G proteins and arrestins.
  • Analyzed the role of the C-terminal tail in G protein activation and arrestin-3 recruitment.
  • Examined alternative splicing effects on functional outcomes.
  • Evaluated GRK involvement in arrestin-3 recruitment.
  • Diversity in ADGRL2's tail modulates G protein activation and arrestin-3 binding.
  • An intact tail allows arrestin-3 recruitment even without G protein activation, indicating a bias.
  • GRK2's role in increasing arrestin-3 recruitment is limited to certain ADGRL2 variants.

Abstract

The class B2 adhesion G protein-coupled receptors (aGPCRs) combines cell adhesion with GPCR signaling to control diverse biological processes. How aGPCRs interact with distinct groups of effectors including G proteins, arrestins, and G protein-coupled receptor kinases (GRKs) remains unclear. Here, we find that diversity in the aGPCR intracellular tail modulates G protein activation, arrestin-3 recruitment, and GRK selectivity in aGPCR ADGRL2. The C-terminal tail of ADGRL2 is required for G protein activation and arrestin-3 recruitment. ADGRL2 with an intact tail recruits arrestin-3 in the absence of G protein activation, suggesting arrestin-3-biased signaling. Alternative splicing of the ADGRL2 tail modulates G protein activation and arrestin-3 binding independently. GRKs are important but not essential for arrestin-3 recruitment to ADGRL2. Moreover, GRK2 increases arrestin-3 recruitment only in a subset of ADGRL2 variants. Collectively, these results show that the interactions of class B2 aGPCRs and arrestin are distinct from class A GPCRs and that ADGRL2 splicing determines effector bias.

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Cite This Study

Garbett et al. (2026) studied this question.

synapsesocial.com/papers/69af949670916d39fea4ba3dhttps://doi.org/10.1016/j.chembiol.2026.02.004
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