Utilize este identificador para referenciar este registo: http://hdl.handle.net/10451/50062
Título: Two motors and one spring: hypothetic roles of non-muscle Myosin II and submembrane actin-based Cytoskeleton in cell volume sensing
Autor: Barvitenko, Nadezhda
Aslam, Muhammad
Lawen, Alfons
Saldanha, Carlota
Skverchinskaya, Elisaveta
Uras, Giuseppe
Manca, Alessia
Pantaleo, Antonella
Palavras-chave: Actin cortex
Actin polymerization
Apoptosis
Cell volume
Mechanosensors
Migration
Non-muscle myosin II
Proliferation
Shrinkage
Swelling
Data: 2021
Editora: MDPI
Citação: Int J Mol Sci. 2021 Jul 26;22(15):7967
Resumo: Changes in plasma membrane curvature and intracellular ionic strength are two key features of cell volume perturbations. In this hypothesis we present a model of the responsible molecular apparatus which is assembled of two molecular motors [non-muscle myosin II (NMMII) and protrusive actin polymerization], a spring [a complex between the plasma membrane (PM) and the submembrane actin-based cytoskeleton (smACSK) which behaves like a viscoelastic solid] and the associated signaling proteins. We hypothesize that this apparatus senses changes in both the plasma membrane curvature and the ionic strength and in turn activates signaling pathways responsible for regulatory volume increase (RVI) and regulatory volume decrease (RVD). During cell volume changes hydrostatic pressure (HP) changes drive alterations in the cell membrane curvature. HP difference has opposite directions in swelling versus shrinkage, thus allowing distinction between them. By analogy with actomyosin contractility that appears to sense stiffness of the extracellular matrix we propose that NMMII and actin polymerization can actively probe the transmembrane gradient in HP. Furthermore, NMMII and protein-protein interactions in the actin cortex are sensitive to ionic strength. Emerging data on direct binding to and regulating activities of transmembrane mechanosensors by NMMII and actin cortex provide routes for signal transduction from transmembrane mechanosensors to cell volume regulatory mechanisms.
Descrição: © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Peer review: yes
URI: http://hdl.handle.net/10451/50062
DOI: 10.3390/ijms22157967
ISSN: 1661-6596
Versão do Editor: https://www.mdpi.com/journal/ijms
Aparece nas colecções:FM - Artigos em Revistas Internacionais
IMM - Artigos em Revistas Internacionais

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