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Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/20.500.12008/54308 Cómo citar
Título: Function and Plasticity of Electrical Synapses in the Mammalian Brain: Role of Non-Junctional Mechanisms
Autor: Curti, Sebastián
Davoine, Federico
Dapino, Antonella
Tipo: Artículo
Palabras clave: Gap junctions, Connexins, Electrical coupling, Cx36
Descriptores: SINAPSIS ELÉCTRICAS, CEREBRO, PROTEÍNAS DE LA MEMBRANA
Fecha de publicación: 2022
Resumen: Electrical transmission between neurons is largely mediated by gap junctions. These junctions allow the direct flow of electric current between neurons, and in mammals, they are mostly composed of the protein connexin36. Circuits of electrically coupled neurons are widespread in these animals. Plus, experimental and theoretical evidence supports the notion that, beyond synchronicity, these circuits are able to perform sophisticated operations such as lateral excitation and inhibition, noise reduction, as well as the ability to selectively respond upon coincident excitatory inputs. Although once considered stereotyped and unmodifiable, we now know that electrical synapses are subject to modulation and, by reconfiguring neural circuits, these modulations can alter relevant operations. The strength of electrical synapses depends on the gap junction resistance, as well as on its functional interaction with the electrophysiological properties of coupled neurons. In particular, voltage and ligand gated channels of the non-synaptic membrane critically determine the efficacy of transmission at these contacts. Consistently, modulatory actions on these channels have been shown to represent relevant mechanisms of plasticity of electrical synaptic transmission. Here, we review recent evidence on the regulation of electrical synapses of mammals, the underlying molecular mechanisms, and the possible ways in which they affect circuit function.
Editorial: MDPI
EN: Biology. 2022;11(1)
Citación: Curti S, Davoine F y Dapino A. Function and Plasticity of Electrical Synapses in the Mammalian Brain: Role of Non-Junctional Mechanisms. Biology [en línea]. 2022;11(1). 24 p.
Licencia: Licencia Creative Commons Atribución (CC - By 4.0)
Aparece en las colecciones: Publicaciones Académicas y Científicas - Facultad de Medicina

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