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Open AccessJournal ArticleDOI

Elementary and global aspects of calcium signalling.

Michael J. Berridge
- 01 Mar 1997 - 
- Vol. 499, Iss: 2, pp 291-306
TLDR
Using Ca2+ imaging techniques, the opening of individual channels has now been visualized and models have been proposed to explain how these elementary events are coordinated to generate the global Ca 2+ signals that regulate cellular activity.
Abstract
Calcium is a ubiquitous second messenger used to regulate a wide range of cellular processes. This role in signalling has to be conducted against the rigid homeostatic mechanisms that ensure that the resting level of Ca2+ is kept low (i.e. between 20 and 100 nmol l-1) in order to avoid the cytotoxic effects of a prolonged elevation of [Ca2+]. Cells have evolved a sophisticated signalling system based on the generation of brief pulses of Ca2+ which enables this ion to be used as a messenger, thus avoiding its toxic effects. Such Ca2+ spikes usually result from the coordinated release of Ca2+ from internal stores using either inositol 1,4,5-trisphosphate or ryanodine receptors. Using Ca2+ imaging techniques, the opening of individual channels has now been visualized and models have been proposed to explain how these elementary events are coordinated to generate the global Ca2+ signals that regulate cellular activity.

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References
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High-Resolution Measurement of the Time Course of Calcium-Concentration Microdomains at Squid Presynaptic Terminals

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Journal Article

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Journal ArticleDOI

Ca2+ inhibition of inositol trisphosphate‐induced Ca2+ release in single smooth muscle cells of guinea‐pig small intestine.

TL;DR: The results support the idea that InsP3‐induced Ca(2+)‐store release can be inhibited by a certain level of [Ca2+]i at a time when Ca2+ stores have refilled and can be released by caffeine and support the suggestion that during oscillations of [ Ca2-i]i evoked by muscarinic receptor activation, Ca2+.
Journal ArticleDOI

Properties of spontaneous inward currents in rabbit pulmonary artery smooth muscle cells.

TL;DR: In every cell examined when the spontaneous currents occurred as biphasic events, outward currents preceded inward currents in over 90% of these events whereas the inward current always preceded the outward current in caffeine- and noradrenaline-evoked responses.
Journal ArticleDOI

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TL;DR: Calcium diffusion from an open channel to neighboring release sites is a rate-determining regenerative step in calcium wave propagation, and the theoretical limitations of the wave front analysis are discussed.
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