Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif

Skeletal muscle voltage-gated Na+ channel (NaV1.4) activity is subject to calmodulin (CaM) mediated Ca2 +-dependent inactivation while cardiac NaV1.5 is not. Here authors use structural biology, binding and electrophysiology to parse the Ca2 +-dependent changes of CaM when bound to the NaV1.4.

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Autores principales: Jesse B. Yoder, Manu Ben-Johny, Federica Farinelli, Lakshmi Srinivasan, Sophie R. Shoemaker, Gordon F. Tomaselli, Sandra B. Gabelli, L. Mario Amzel
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/dfd0a8426542457a852ee9eb17bcb1d2
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spelling oai:doaj.org-article:dfd0a8426542457a852ee9eb17bcb1d22021-12-02T15:35:53ZCa2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif10.1038/s41467-019-09570-72041-1723https://doaj.org/article/dfd0a8426542457a852ee9eb17bcb1d22019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09570-7https://doaj.org/toc/2041-1723Skeletal muscle voltage-gated Na+ channel (NaV1.4) activity is subject to calmodulin (CaM) mediated Ca2 +-dependent inactivation while cardiac NaV1.5 is not. Here authors use structural biology, binding and electrophysiology to parse the Ca2 +-dependent changes of CaM when bound to the NaV1.4.Jesse B. YoderManu Ben-JohnyFederica FarinelliLakshmi SrinivasanSophie R. ShoemakerGordon F. TomaselliSandra B. GabelliL. Mario AmzelNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jesse B. Yoder
Manu Ben-Johny
Federica Farinelli
Lakshmi Srinivasan
Sophie R. Shoemaker
Gordon F. Tomaselli
Sandra B. Gabelli
L. Mario Amzel
Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
description Skeletal muscle voltage-gated Na+ channel (NaV1.4) activity is subject to calmodulin (CaM) mediated Ca2 +-dependent inactivation while cardiac NaV1.5 is not. Here authors use structural biology, binding and electrophysiology to parse the Ca2 +-dependent changes of CaM when bound to the NaV1.4.
format article
author Jesse B. Yoder
Manu Ben-Johny
Federica Farinelli
Lakshmi Srinivasan
Sophie R. Shoemaker
Gordon F. Tomaselli
Sandra B. Gabelli
L. Mario Amzel
author_facet Jesse B. Yoder
Manu Ben-Johny
Federica Farinelli
Lakshmi Srinivasan
Sophie R. Shoemaker
Gordon F. Tomaselli
Sandra B. Gabelli
L. Mario Amzel
author_sort Jesse B. Yoder
title Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
title_short Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
title_full Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
title_fullStr Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
title_full_unstemmed Ca2+-dependent regulation of sodium channels NaV1.4 and NaV1.5 is controlled by the post-IQ motif
title_sort ca2+-dependent regulation of sodium channels nav1.4 and nav1.5 is controlled by the post-iq motif
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/dfd0a8426542457a852ee9eb17bcb1d2
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AT federicafarinelli ca2dependentregulationofsodiumchannelsnav14andnav15iscontrolledbythepostiqmotif
AT lakshmisrinivasan ca2dependentregulationofsodiumchannelsnav14andnav15iscontrolledbythepostiqmotif
AT sophiershoemaker ca2dependentregulationofsodiumchannelsnav14andnav15iscontrolledbythepostiqmotif
AT gordonftomaselli ca2dependentregulationofsodiumchannelsnav14andnav15iscontrolledbythepostiqmotif
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