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Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels

An intramolecular interaction between a distal (DCRD) and a proximal regulatory domain (PCRD) within the C terminus of long Ca(v)1.3 L-type Ca(2+) channels (Ca(v)1.3(L)) is a major determinant of their voltage- and Ca(2+)-dependent gating kinetics. Removal of these regulatory domains by alternative...

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Autores principales: Bock, Gabriella, Gebhart, Mathias, Scharinger, Anja, Jangsangthong, Wanchana, Busquet, Perrine, Poggiani, Chiara, Sartori, Simone, Mangoni, Matteo E., Sinnegger-Brauns, Martina J., Herzig, Stefan, Striessnig, Jörg, Koschak, Alexandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3234942/
https://www.ncbi.nlm.nih.gov/pubmed/21998310
http://dx.doi.org/10.1074/jbc.M111.269951
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author Bock, Gabriella
Gebhart, Mathias
Scharinger, Anja
Jangsangthong, Wanchana
Busquet, Perrine
Poggiani, Chiara
Sartori, Simone
Mangoni, Matteo E.
Sinnegger-Brauns, Martina J.
Herzig, Stefan
Striessnig, Jörg
Koschak, Alexandra
author_facet Bock, Gabriella
Gebhart, Mathias
Scharinger, Anja
Jangsangthong, Wanchana
Busquet, Perrine
Poggiani, Chiara
Sartori, Simone
Mangoni, Matteo E.
Sinnegger-Brauns, Martina J.
Herzig, Stefan
Striessnig, Jörg
Koschak, Alexandra
author_sort Bock, Gabriella
collection PubMed
description An intramolecular interaction between a distal (DCRD) and a proximal regulatory domain (PCRD) within the C terminus of long Ca(v)1.3 L-type Ca(2+) channels (Ca(v)1.3(L)) is a major determinant of their voltage- and Ca(2+)-dependent gating kinetics. Removal of these regulatory domains by alternative splicing generates Ca(v)1.3(42A) channels that activate at a more negative voltage range and exhibit more pronounced Ca(2+)-dependent inactivation. Here we describe the discovery of a novel short splice variant (Ca(v)1.3(43S)) that is expressed at high levels in the brain but not in the heart. It lacks the DCRD but, in contrast to Ca(v)1.3(42A), still contains PCRD. When expressed together with α2δ1 and β3 subunits in tsA-201 cells, Ca(v)1.3(43S) also activated at more negative voltages like Ca(v)1.3(42A) but Ca(2+)-dependent inactivation was less pronounced. Single channel recordings revealed much higher channel open probabilities for both short splice variants as compared with Ca(v)1.3(L). The presence of the proximal C terminus in Ca(v)1.3(43S) channels preserved their modulation by distal C terminus-containing Ca(v)1.3- and Ca(v)1.2-derived C-terminal peptides. Removal of the C-terminal modulation by alternative splicing also induced a faster decay of Ca(2+) influx during electrical activities mimicking trains of neuronal action potentials. Our findings extend the spectrum of functionally diverse Ca(v)1.3 L-type channels produced by tissue-specific alternative splicing. This diversity may help to fine tune Ca(2+) channel signaling and, in the case of short variants lacking a functional C-terminal modulation, prevent excessive Ca(2+) accumulation during burst firing in neurons. This may be especially important in neurons that are affected by Ca(2+)-induced neurodegenerative processes.
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spelling pubmed-32349422011-12-12 Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels Bock, Gabriella Gebhart, Mathias Scharinger, Anja Jangsangthong, Wanchana Busquet, Perrine Poggiani, Chiara Sartori, Simone Mangoni, Matteo E. Sinnegger-Brauns, Martina J. Herzig, Stefan Striessnig, Jörg Koschak, Alexandra J Biol Chem Cell Biology An intramolecular interaction between a distal (DCRD) and a proximal regulatory domain (PCRD) within the C terminus of long Ca(v)1.3 L-type Ca(2+) channels (Ca(v)1.3(L)) is a major determinant of their voltage- and Ca(2+)-dependent gating kinetics. Removal of these regulatory domains by alternative splicing generates Ca(v)1.3(42A) channels that activate at a more negative voltage range and exhibit more pronounced Ca(2+)-dependent inactivation. Here we describe the discovery of a novel short splice variant (Ca(v)1.3(43S)) that is expressed at high levels in the brain but not in the heart. It lacks the DCRD but, in contrast to Ca(v)1.3(42A), still contains PCRD. When expressed together with α2δ1 and β3 subunits in tsA-201 cells, Ca(v)1.3(43S) also activated at more negative voltages like Ca(v)1.3(42A) but Ca(2+)-dependent inactivation was less pronounced. Single channel recordings revealed much higher channel open probabilities for both short splice variants as compared with Ca(v)1.3(L). The presence of the proximal C terminus in Ca(v)1.3(43S) channels preserved their modulation by distal C terminus-containing Ca(v)1.3- and Ca(v)1.2-derived C-terminal peptides. Removal of the C-terminal modulation by alternative splicing also induced a faster decay of Ca(2+) influx during electrical activities mimicking trains of neuronal action potentials. Our findings extend the spectrum of functionally diverse Ca(v)1.3 L-type channels produced by tissue-specific alternative splicing. This diversity may help to fine tune Ca(2+) channel signaling and, in the case of short variants lacking a functional C-terminal modulation, prevent excessive Ca(2+) accumulation during burst firing in neurons. This may be especially important in neurons that are affected by Ca(2+)-induced neurodegenerative processes. American Society for Biochemistry and Molecular Biology 2011-12-09 2011-10-13 /pmc/articles/PMC3234942/ /pubmed/21998310 http://dx.doi.org/10.1074/jbc.M111.269951 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Cell Biology
Bock, Gabriella
Gebhart, Mathias
Scharinger, Anja
Jangsangthong, Wanchana
Busquet, Perrine
Poggiani, Chiara
Sartori, Simone
Mangoni, Matteo E.
Sinnegger-Brauns, Martina J.
Herzig, Stefan
Striessnig, Jörg
Koschak, Alexandra
Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title_full Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title_fullStr Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title_full_unstemmed Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title_short Functional Properties of a Newly Identified C-terminal Splice Variant of Ca(v)1.3 L-type Ca(2+) Channels
title_sort functional properties of a newly identified c-terminal splice variant of ca(v)1.3 l-type ca(2+) channels
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3234942/
https://www.ncbi.nlm.nih.gov/pubmed/21998310
http://dx.doi.org/10.1074/jbc.M111.269951
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