The Surprising Dynamics of Electrochemical Coupling at Membrane Sandwiches in Plants

Dreyer, Ingo; Vergara-Valladares, Fernando; Merida-Quesada, Franko; Rubio-Melendez, Maria Eugenia; Hernandez-Rojas, Naomi; Riedelsberger, Janin; Astola-Mariscal, Sadith Zobeida; Heitmuller, Charlotte; Yanez-Chavez, Monica; Arrey-Salas, Oscar; San Martin-Davison, Alex; Navarro-Retamal, Carlos; Michard, Erwan

Abstract

Transport processes across membranes play central roles in any biological system. They are essential for homeostasis, cell nutrition, and signaling. Fluxes across membranes are governed by fundamental thermodynamic rules and are influenced by electrical potentials and concentration gradients. Transmembrane transport processes have been largely studied on single membranes. However, several important cellular or subcellular structures consist of two closely spaced membranes that form a membrane sandwich. Such a dual membrane structure results in remarkable properties for the transport processes that are not present in isolated membranes. At the core of membrane sandwich properties, a small intermembrane volume is responsible for efficient coupling between the transport systems at the two otherwise independent membranes. Here, we present the physicochemical principles of transport coupling at two adjacent membranes and illustrate this concept with three examples. In the supplementary material, we provide animated PowerPoint presentations that visualize the relationships. They could be used for teaching purposes, as has already been completed successfully at the University of Talca.

Más información

Título según WOS: ID WOS:000909115500001 Not found in local WOS DB
Título de la Revista: PLANTS-BASEL
Volumen: 12
Número: 1
Editorial: MDPI
Fecha de publicación: 2023
DOI:

10.3390/plants12010204

Notas: ISI