The multi-facet aspects of cell sentience and their relevance for the integrative brain actions: role of membrane protein energy landscape

Author:

Agnati Luigi F.,Marcoli Manuela1,Maura Guido1,Fuxe Kjell2,Guidolin Diego3

Affiliation:

1. 3University of Genova, Department of Pharmacy and Center of Excellence for Biomedical Research, Viale Cembrano 4, I-16148 Genova, Italy

2. 2Karolinska Institutet, Department of Neuroscience, S-17177 Stockholm, Sweden

3. 4University of Padova, Department of Molecular Medicine, I-35122 Padova, Italy

Abstract

AbstractSeveral ion channels can be randomly and spontaneously in an open state, allowing the exchange of ion fluxes between extracellular and intracellular environments. We propose that the random changes in the state of ion channels could be also due to proteins exploring their energy landscapes. Indeed, proteins can modify their steric conformation under the effects of the physicochemical parameters of the environments with which they are in contact, namely, the extracellular, intramembrane and intracellular environments. In particular, it is proposed that the random walk of proteins in their energy landscape is towards attractors that can favor the open or close condition of the ion channels and/or intrinsic activity of G-protein-coupled receptors. The main aspect of the present proposal is that some relevant physicochemical parameters of the environments (e.g. molecular composition, temperature, electrical fields) with which some signaling-involved plasma membrane proteins are in contact alter their conformations. In turn, these changes can modify their information handling via a modulatory action on their random walk towards suitable attractors of their energy landscape. Thus, spontaneous and/or signal-triggered electrical activities of neurons occur that can have emergent properties capable of influencing the integrative actions of brain networks. Against this background, Cook’s hypothesis on ‘cell sentience’ is developed by proposing that physicochemical parameters of the environments with which the plasma-membrane proteins of complex cellular networks are in contact fulfill a fundamental role in their spontaneous and/or signal-triggered activity. Furthermore, it is proposed that a specialized organelle, the primary cilium, which is present in most cells (also neurons and astrocytes), could be of peculiar importance to pick up chemical signals such as ions and transmitters and to detect physical signals such as pressure waves, thermal gradients, and local field potentials.

Publisher

Walter de Gruyter GmbH

Subject

General Neuroscience

Reference248 articles.

1. Visualization of astrocytic primary cilia in the mouse brain by immunofluorescent analysis using the cilia marker Arl13b;Acta Med. Okayama,2014

2. How do cilia organize signalling cascades?;Phil. Trans. R. Soc. B,2014

3. G protein-coupled receptors sense fluid shear stress in endothelial cells;Proc. Natl. Acad. Sci. USA,2006

4. Voltage-gated sodium channels shape subthreshold EPSPs in layer 5 pyramidal neurons from rat prefrontal cortex;J. Neurophysiol.,2001

5. Receptor-receptor interactions in the central nervous system. A new integrative mechanism in synapses;Med. Res. Rev.,1985

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