Dynamics of cyclic nucleotide signaling in neurons / edited by Pierre Vincent, Nicholas C. Spitzer.

Cyclic nucleotides control a number of neuronal properties including neuronal differentiation, pathfinding, regulation of excitability and synaptic transmission, and control of gene expression. Signaling events mediated by cAMP or cGMP are transient and take place within the complex 3-dimensional st...

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Superior document:Frontiers Research Topics
:
TeilnehmendeR:
Place / Publishing House:France : : b Frontiers Media SA,, 2015
Year of Publication:2015
Language:English
Series:Frontiers Research Topics
Physical Description:1 online resource (92 pages) :; illustrations, charts.
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spelling Nicholas C. Spitzer auth
Dynamics of cyclic nucleotide signaling in neurons [electronic resource] / edited by Pierre Vincent, Nicholas C. Spitzer.
Frontiers Media SA 2015
France : b Frontiers Media SA, 2015
1 online resource (92 pages) : illustrations, charts.
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
text file rda
Frontiers Research Topics
Includes bibliographical references.
Cyclic nucleotides control a number of neuronal properties including neuronal differentiation, pathfinding, regulation of excitability and synaptic transmission, and control of gene expression. Signaling events mediated by cAMP or cGMP are transient and take place within the complex 3-dimensional structure of the neuronal cell. Signaling events happen on the time scale of seconds to minutes and the biological significance of the temporal dimension remains poorly understood. Structural features of neurons (dendritic spines and branches, cell body, nucleus, axon…) as well as AKAPs and other scaffolding proteins that keep signaling enzymes together and form "signaling microdomains", are critical spatial determinants of signal integration. Finally, the types of enzymes involved in signal integration, which are expressed as a number of different types and splice variants, yield another dimension that determines signal integration properties. Biosensor imaging provides direct temporal and spatial measurement of intracellular signals. This novel approach, together with more conventional methods such as biochemistry, electrophysiology, and modeling, now provide a better understanding of the spatial and temporal features of cyclic nucleotide signal integration in living neurons. This topic aims at providing a better understanding of how neurons are "making sense" of cyclic nucleotide signaling in living neurons.
English
Neurons
rac GTP-Binding Proteins
Dopamine
biosensor imaging
compartmentalization
noradrenalin
Cyclic GMP
Cyclic AMP
phosphodiesterases
Endocannabinoids
Vincent, Pierre, editor.
Spitzer, Nicholas C., editor.
language English
format Electronic
eBook
author Nicholas C. Spitzer
spellingShingle Nicholas C. Spitzer
Dynamics of cyclic nucleotide signaling in neurons
Frontiers Research Topics
author_facet Nicholas C. Spitzer
Vincent, Pierre,
Spitzer, Nicholas C.,
author_variant n c s ncs
author2 Vincent, Pierre,
Spitzer, Nicholas C.,
author2_variant p v pv
n c s nc ncs
author2_role TeilnehmendeR
TeilnehmendeR
author_sort Nicholas C. Spitzer
title Dynamics of cyclic nucleotide signaling in neurons
title_full Dynamics of cyclic nucleotide signaling in neurons [electronic resource] / edited by Pierre Vincent, Nicholas C. Spitzer.
title_fullStr Dynamics of cyclic nucleotide signaling in neurons [electronic resource] / edited by Pierre Vincent, Nicholas C. Spitzer.
title_full_unstemmed Dynamics of cyclic nucleotide signaling in neurons [electronic resource] / edited by Pierre Vincent, Nicholas C. Spitzer.
title_auth Dynamics of cyclic nucleotide signaling in neurons
title_new Dynamics of cyclic nucleotide signaling in neurons
title_sort dynamics of cyclic nucleotide signaling in neurons
series Frontiers Research Topics
series2 Frontiers Research Topics
publisher Frontiers Media SA
b Frontiers Media SA,
publishDate 2015
physical 1 online resource (92 pages) : illustrations, charts.
isbn 9782889196463 (ebook)
illustrated Illustrated
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