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dc.contributor.author Ozu, Marcelo
dc.contributor.author Galizia, Luciano
dc.contributor.author Alvear-Arias, Juan José
dc.contributor.author Fernández, Miguel
dc.contributor.author Caviglia, Agustín
dc.contributor.author Zimmermann, Rosario
dc.contributor.author Guastaferri, Florencia
dc.contributor.author Espinoza-Muñoz, Nicolás
dc.contributor.author Sutka, Moira
dc.contributor.author Sigaut, Lorena
dc.contributor.author Pietrasanta, Lía Isabel
dc.contributor.author González, Carlos
dc.contributor.author Amodeo, Gabriela
dc.contributor.author Garate, José Antonio
dc.date.accessioned 2025-04-03T18:20:14Z
dc.date.available 2025-04-03T18:20:14Z
dc.date.issued 2023-08
dc.identifier.issn 1867-2450
dc.identifier.uri https://repositorio.uss.cl/handle/uss/19213
dc.description Publisher Copyright: © 2023, International Union for Pure and Applied Biophysics (IUPAB) and Springer-Verlag GmbH Germany, part of Springer Nature.
dc.description.abstract Cellular systems must deal with mechanical forces to satisfy their physiological functions. In this context, proteins with mechanosensitive properties play a crucial role in sensing and responding to environmental changes. The discovery of aquaporins (AQPs) marked a significant breakthrough in the study of water transport. Their transport capacity and regulation features make them key players in cellular processes. To date, few AQPs have been reported to be mechanosensitive. Like mechanosensitive ion channels, AQPs respond to tension changes in the same range. However, unlike ion channels, the aquaporin’s transport rate decreases as tension increases, and the molecular features of the mechanism are unknown. Nevertheless, some clues from mechanosensitive ion channels shed light on the AQP-membrane interaction. The GxxxG motif may play a critical role in the water permeation process associated with structural features in AQPs. Consequently, a possible gating mechanism triggered by membrane tension changes would involve a conformational change in the cytoplasmic extreme of the single file region of the water pathway, where glycine and histidine residues from loop B play a key role. In view of their transport capacity and their involvement in relevant processes related to mechanical forces, mechanosensitive AQPs are a fundamental piece of the puzzle for understanding cellular responses. en
dc.language.iso eng
dc.relation.ispartof vol. 15 Issue: no. 4 Pages: 497-513
dc.source Biophysical Reviews
dc.title Mechanosensitive aquaporins en
dc.type Artículo de revisión
dc.identifier.doi 10.1007/s12551-023-01098-x
dc.publisher.department Facultad de Ingeniería y Tecnología
dc.publisher.department Facultad de Ingeniería, Arquitectura y Diseño


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