Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses

Changes in intracellular calcium ions [Ca2+] play important roles in photoreceptor signalling. Consequently, intracellular [Ca2+] levels need to be tightly controlled. In the light-sensitive outer segments (OS) of photoreceptors, Ca2+ regulates the activity of retinal guanylate cyclases (ret-GCs) th...

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Main Author: Frank eSchmitz
Format: Article
Language:English
Published: Frontiers Media S.A. 2014-02-01
Series:Frontiers in Molecular Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnmol.2014.00003/full
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spelling doaj-2185b0323d2d4e58b3a149c1c21bfc772020-11-24T23:46:43ZengFrontiers Media S.A.Frontiers in Molecular Neuroscience1662-50992014-02-01710.3389/fnmol.2014.0000373666Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapsesFrank eSchmitz0Saarland University, Institute for Anatomy and Cell BiologyChanges in intracellular calcium ions [Ca2+] play important roles in photoreceptor signalling. Consequently, intracellular [Ca2+] levels need to be tightly controlled. In the light-sensitive outer segments (OS) of photoreceptors, Ca2+ regulates the activity of retinal guanylate cyclases (ret-GCs) thus playing a central role in phototransduction and light-adaptation by restoring light-induced decreases in cGMP. In the synaptic terminals, changes of intracellular Ca2+ trigger various aspects of neurotransmission. Photoreceptors employ tonically active ribbon synapses that encode light-induced, graded changes of membrane potential into different rates of synaptic vesicle exocytosis. The active zones of ribbon synapses contain large electron-dense structures, synaptic ribbons, that are associated with large numbers of synaptic vesicles. Synaptic coding at ribbon synapses differs from synaptic coding at conventional (phasic) synapses. Recent studies revealed new insights how synaptic ribbons are involved in this process. This review focuses on the regulation of [Ca2+] in presynaptic photoreceptor terminals and on the function of a particular Ca2+-regulated protein, the neuronal calcium sensor protein GCAP2 (guanylate cyclase-activating protein-2) in the photoreceptor ribbon synapse. GCAP2, an EF hand-containing protein plays multiple roles in the OS and in the photoreceptor synapse. In the OS, GCAP2 works as a Ca2+-sensor within a Ca2+-regulated feedback loop that adjusts cGMP levels. In the photoreceptor synapse, GCAP2 binds to RIBEYE, a component of synaptic ribbons, and mediates Ca2+-dependent plasticity at that site. Possible mechanisms are discussed.http://journal.frontiersin.org/Journal/10.3389/fnmol.2014.00003/fullCa2+photoreceptorribbon synapsesynaptic ribbonGCAP2
collection DOAJ
language English
format Article
sources DOAJ
author Frank eSchmitz
spellingShingle Frank eSchmitz
Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
Frontiers in Molecular Neuroscience
Ca2+
photoreceptor
ribbon synapse
synaptic ribbon
GCAP2
author_facet Frank eSchmitz
author_sort Frank eSchmitz
title Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
title_short Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
title_full Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
title_fullStr Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
title_full_unstemmed Presynaptic [Ca2+] and GCAPs: aspects on the structure and function of photoreceptor ribbon synapses
title_sort presynaptic [ca2+] and gcaps: aspects on the structure and function of photoreceptor ribbon synapses
publisher Frontiers Media S.A.
series Frontiers in Molecular Neuroscience
issn 1662-5099
publishDate 2014-02-01
description Changes in intracellular calcium ions [Ca2+] play important roles in photoreceptor signalling. Consequently, intracellular [Ca2+] levels need to be tightly controlled. In the light-sensitive outer segments (OS) of photoreceptors, Ca2+ regulates the activity of retinal guanylate cyclases (ret-GCs) thus playing a central role in phototransduction and light-adaptation by restoring light-induced decreases in cGMP. In the synaptic terminals, changes of intracellular Ca2+ trigger various aspects of neurotransmission. Photoreceptors employ tonically active ribbon synapses that encode light-induced, graded changes of membrane potential into different rates of synaptic vesicle exocytosis. The active zones of ribbon synapses contain large electron-dense structures, synaptic ribbons, that are associated with large numbers of synaptic vesicles. Synaptic coding at ribbon synapses differs from synaptic coding at conventional (phasic) synapses. Recent studies revealed new insights how synaptic ribbons are involved in this process. This review focuses on the regulation of [Ca2+] in presynaptic photoreceptor terminals and on the function of a particular Ca2+-regulated protein, the neuronal calcium sensor protein GCAP2 (guanylate cyclase-activating protein-2) in the photoreceptor ribbon synapse. GCAP2, an EF hand-containing protein plays multiple roles in the OS and in the photoreceptor synapse. In the OS, GCAP2 works as a Ca2+-sensor within a Ca2+-regulated feedback loop that adjusts cGMP levels. In the photoreceptor synapse, GCAP2 binds to RIBEYE, a component of synaptic ribbons, and mediates Ca2+-dependent plasticity at that site. Possible mechanisms are discussed.
topic Ca2+
photoreceptor
ribbon synapse
synaptic ribbon
GCAP2
url http://journal.frontiersin.org/Journal/10.3389/fnmol.2014.00003/full
work_keys_str_mv AT frankeschmitz presynapticca2andgcapsaspectsonthestructureandfunctionofphotoreceptorribbonsynapses
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