Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the rhodopsin C-terminal tail to the gβ subunit.
Ching-Ju TsaiJacopo MarinoRicardo AdaixoFilip PamulaJonas MuehleShoji MaedaTilman FlockNicholas M I TaylorInayatulla MohammedHugues MatileRoger Jp DawsonXavier DeupiHenning StahlbergGebhard F X SchertlerPublished in: eLife (2019)
One of the largest membrane protein families in eukaryotes are G protein-coupled receptors (GPCRs). GPCRs modulate cell physiology by activating diverse intracellular transducers, prominently heterotrimeric G proteins. The recent surge in structural data has expanded our understanding of GPCR-mediated signal transduction. However, many aspects, including the existence of transient interactions, remain elusive. We present the cryo-EM structure of the light-sensitive GPCR rhodopsin in complex with heterotrimeric Gi. Our density map reveals the receptor C-terminal tail bound to the Gβ subunit of the G protein, providing a structural foundation for the role of the C-terminal tail in GPCR signaling, and of Gβ as scaffold for recruiting Gα subunits and G protein-receptor kinases. By comparing available complexes, we found a small set of common anchoring points that are G protein-subtype specific. Taken together, our structure and analysis provide new structural basis for the molecular events of the GPCR signaling pathway.
Keyphrases
- signaling pathway
- structural basis
- binding protein
- cell therapy
- single cell
- epithelial mesenchymal transition
- protein kinase
- pi k akt
- big data
- machine learning
- reactive oxygen species
- single molecule
- mesenchymal stem cells
- oxidative stress
- high density
- brain injury
- bone marrow
- artificial intelligence
- endoplasmic reticulum stress