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Calcium signalling remodelling and disease

Biochemical Society Transactions · 2012 · Vol. 40(2) · pp. 297–309
Michael J. Berridge

Abstract

A wide range of Ca2+ signalling systems deliver the spatial and temporal Ca2+ signals necessary to control the specific functions of different cell types. Release of Ca2+ by InsP3 (inositol 1,4,5-trisphosphate) plays a central role in many of these signalling systems. Ongoing transcriptional processes maintain the integrity and stability of these cell-specific signalling systems. However, these homoeostatic systems are highly plastic and can undergo a process of phenotypic remodelling, resulting in the Ca2+ signals being set either too high or too low. Such subtle dysregulation of Ca2+ signals have been linked to some of the major diseases in humans such as cardiac disease, schizophrenia, bipolar disorder and Alzheimer's disease.

Calcium signaling and nucleotide metabolismProtein Kinase Regulation and GTPase SignalingPhosphodiesterase function and regulationSignallingCalcium signalingPhenotypeDiseaseSignal transductionRegulatorSignalling pathwaysProcess (computing)

MeSH terms

BuffersDiseaseHumansPhenotypeReceptors, Cell SurfaceCalcium ChannelsCalcium Signaling
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References
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Nature reviews. Neuroscience · 2010 · 2,108 citations
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