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- W1965241970 abstract "Cytoplasmic Ca2+ is an universal intracellular messenger that activates cellular responses over a broad temporal range, from neurotransmitter release to cell growth and proliferation.1,2 Inherent to the use of the multifarious Ca2+ signal is the question of specificity: how can some Ca2+-dependent responses be activated in a cell and not others? A rise in cytoplasmic Ca2+ can evoke a response either by binding directly to the target (as occurs with certain Ca2+-activated K+ and Cl− channels, for example) or through recruitment of intermediary proteins, such as calmodulin and troponin C. A substantial body of evidence has now established that Ca2+-binding proteins differ both in their affinities for Ca2+ and in their on- and off-rates for Ca2+ binding/unbinding. Furthermore, different Ca2+-binding proteins often occupy distinct locations within the cell. Therefore, the size, kinetics and spatial profile of a cytoplasmic Ca2+ signal are all important in determining which Ca2+-dependent response will be acti..." @default.
- W1965241970 created "2016-06-24" @default.
- W1965241970 creator A5032472929 @default.
- W1965241970 creator A5054059116 @default.
- W1965241970 date "2013-09-01" @default.
- W1965241970 modified "2023-09-23" @default.
- W1965241970 title "STIM proteins, Orai1, and gene expression" @default.
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- W1965241970 doi "https://doi.org/10.4161/chan.25298" @default.
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