BIOMED   24552
INSTITUTO DE INVESTIGACIONES BIOMEDICAS
Unidad Ejecutora - UE
artículos
Título:
Interactions between the Nicotinic and Endocannabinoid Receptors at the Plasma Membrane
Autor/es:
BARRANTES, FJ.; VALLÉS, A.S.
Revista:
Membranes
Editorial:
MDPI
Referencias:
Lugar: Bazel; Año: 2022 vol. 12 p. 1 - 19
ISSN:
2077-0375
Resumen:
Compartmentalization, together with transbilayer and lateral asymmetries, provide the structural foundation for functional specializations at the cell surface, including the active role of the lipid microenvironment in the modulation of membrane-bound proteins. The chemical synapse, the site where neurotransmitter-coded signals are decoded by neurotransmitter receptors, adds another layer of complexity to the plasma membrane architectural intricacy, mainly due to the need to accommodate a sizeable number of molecules in a minute subcellular compartment with dimensions barely reaching the micrometer. In this review, we discuss how nature has developed suitable adjustments to accommodate different types of membrane-bound receptors and scaffolding proteins via membrane microdomains, and how this ?effort-sharing? mechanism has evolved to optimize crosstalk, separation, or coupling, where/when appropriate. We focus on a fast ligand-gated neurotransmitter receptor, the nicotinic acetylcholine receptor, and a second-messenger G-protein coupled receptor, the cannabinoid receptor, as a paradigmatic example.