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Calcium Entry Pathways in Non-excitable Cells

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Cover of 'Calcium Entry Pathways in Non-excitable Cells'

Table of Contents

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    Book Overview
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    Chapter 1 Historical Overview of Store-Operated Ca(2+) Entry.
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    Chapter 2 The STIM1: Orai Interaction.
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    Chapter 3 The TRPCs, Orais and STIMs in ER/PM Junctions.
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    Chapter 4 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 5 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 6 Phospholipase A2 as a Molecular Determinant of Store-Operated Calcium Entry.
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    Chapter 7 Extracellular Calcium Has Multiple Targets to Control Cell Proliferation.
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    Chapter 8 Regulation of Platelet Function by Orai, STIM and TRP.
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    Chapter 9 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 10 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 11 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 12 Calcium Entry Through Thermosensory Channels.
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    Chapter 13 Calcium Signalling through Ligand-Gated Ion Channels such as P2X1 Receptors in the Platelet and other Non-Excitable Cells.
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    Chapter 14 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 15 Microdomains Associated to Lipid Rafts.
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    Chapter 16 Role of Scaffolding Proteins in the Regulation of TRPC-Dependent Calcium Entry.
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    Chapter 17 Modulation of Calcium Entry by Mitochondria.
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    Chapter 18 Calcium Entry Pathways in Non-excitable Cells
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    Chapter 19 Remodeling of Calcium Entry Pathways in Cancer.
Attention for Chapter 12: Calcium Entry Through Thermosensory Channels.
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Chapter title
Calcium Entry Through Thermosensory Channels.
Chapter number 12
Book title
Calcium Entry Pathways in Non-excitable Cells
Published in
Advances in experimental medicine and biology, May 2016
DOI 10.1007/978-3-319-26974-0_12
Pubmed ID
Book ISBNs
978-3-31-926972-6, 978-3-31-926974-0
Authors

Francisco J. Taberner, Isabel Devesa, Antonio Ferrer-Montiel

Editors

Juan A. Rosado

Abstract

ThermoTRPs are unique channels that mediate Na(+) and Ca(2+) currents in response to changes in ambient temperature. In combination with their activation by other physical and chemical stimuli, they are considered key integrators of environmental cues into neuronal excitability. Furthermore, roles of thermoTRPs in non-neuronal tissues are currently emerging such as insulin secretion in pancreatic β-cells, and links to cancer. Calcium permeability through thermoTRPs appears a central hallmark for their physiological and pathological activities. Moreover, it is currently being proposed that beyond working as a second messenger, Ca(2+) can function locally by acting on protein complexes near the membrane. Interestingly, thermoTRPs can enhance and expand the inherent plasticity of signalplexes by conferring them temperature, pH and lipid regulation through Ca(2+) signalling. Thus, unveiling the local role of Ca(2+) fluxes induced by thermoTRPs on the dynamics of membrane-attached signalling complexes as well as their significance in cellular processes, are central issues that will expand the opportunities for therapeutic intervention in disorders involving dysfunction of thermoTRP channels.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 10 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Chile 1 10%
Unknown 9 90%

Demographic breakdown

Readers by professional status Count As %
Student > Master 2 20%
Student > Bachelor 1 10%
Student > Ph. D. Student 1 10%
Professor 1 10%
Researcher 1 10%
Other 1 10%
Unknown 3 30%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 2 20%
Agricultural and Biological Sciences 2 20%
Immunology and Microbiology 1 10%
Medicine and Dentistry 1 10%
Neuroscience 1 10%
Other 0 0%
Unknown 3 30%