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- W2063993145 abstract "Calcium is a ubiquitous second messenger that mediates vital physiological responses such as fertilization, secretion, gene expression, or apoptosis. Given this variety of processes mediated by Ca2+, these signals are highly organized both in time and space to ensure reliability and specificity. This review deals with the spatiotemporal organization of the Ca2+ signaling pathway in electrically nonexcitable cells in which InsP3 receptors are by far the most important Ca2+ channels. We focus on the aspects of this highly regulated dynamical system for which an interplay between experiments and modeling is particularly fruitful. In particular, the importance of the relative densities of the different InsP3 receptor subtypes will be discussed on the basis of a modeling approach linking the steady‐state behaviors of these channels in electrophysiological experiments with their behavior in a cellular environment. Also, the interplay between InsP3 metabolism and Ca2+ oscillations will be considered. Finally, we discuss the relationships between stochastic openings of the Ca2+ releasing channels at the microscopic level and the coordinated, regular behavior observed at the whole cell level on the basis of a combined experimental and modeling approach." @default.
- W2063993145 created "2016-06-24" @default.
- W2063993145 creator A5056827989 @default.
- W2063993145 creator A5071751610 @default.
- W2063993145 date "2010-04-01" @default.
- W2063993145 modified "2023-10-16" @default.
- W2063993145 title "Spatiotemporal organization of Ca<sup>2+</sup>dynamics: A modeling‐based approach" @default.
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- W2063993145 doi "https://doi.org/10.2976/1.3385660" @default.
- W2063993145 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/2931296" @default.
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