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A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation

Na(+)/Ca(2+) exchanger (NCX) proteins mediate Ca(2+)-fluxes across the cell membrane to maintain Ca(2+) homeostasis in many cell types. Eukaryotic NCX contains Ca(2+)-binding regulatory domains, CBD1 and CBD2. Ca(2+) binding to a primary sensor (Ca3-Ca4 sites) on CBD1 activates mammalian NCXs, where...

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Autores principales: Giladi, Moshe, Sasson, Yehezkel, Fang, Xianyang, Hiller, Reuben, Buki, Tal, Wang, Yun-Xing, Hirsch, Joel A., Khananshvili, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3386913/
https://www.ncbi.nlm.nih.gov/pubmed/22768191
http://dx.doi.org/10.1371/journal.pone.0039985
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author Giladi, Moshe
Sasson, Yehezkel
Fang, Xianyang
Hiller, Reuben
Buki, Tal
Wang, Yun-Xing
Hirsch, Joel A.
Khananshvili, Daniel
author_facet Giladi, Moshe
Sasson, Yehezkel
Fang, Xianyang
Hiller, Reuben
Buki, Tal
Wang, Yun-Xing
Hirsch, Joel A.
Khananshvili, Daniel
author_sort Giladi, Moshe
collection PubMed
description Na(+)/Ca(2+) exchanger (NCX) proteins mediate Ca(2+)-fluxes across the cell membrane to maintain Ca(2+) homeostasis in many cell types. Eukaryotic NCX contains Ca(2+)-binding regulatory domains, CBD1 and CBD2. Ca(2+) binding to a primary sensor (Ca3-Ca4 sites) on CBD1 activates mammalian NCXs, whereas CALX, a Drosophila NCX ortholog, displays an inhibitory response to regulatory Ca(2+). To further elucidate the underlying regulatory mechanisms, we determined the 2.7 Å crystal structure of mammalian CBD12-E454K, a two-domain construct that retains wild-type properties. In conjunction with stopped-flow kinetics and SAXS (small-angle X-ray scattering) analyses of CBD12 mutants, we show that Ca(2+) binding to Ca3-Ca4 sites tethers the domains via a network of interdomain salt-bridges. This Ca(2+)-driven interdomain switch controls slow dissociation of “occluded” Ca(2+) from the primary sensor and thus dictates Ca(2+) sensing dynamics. In the Ca(2+)-bound conformation, the interdomain angle of CBD12 is very similar in NCX and CALX, meaning that the interdomain distances cannot account for regulatory diversity in NCX and CALX. Since the two-domain interface is nearly identical among eukaryotic NCXs, including CALX, we suggest that the Ca(2+)-driven interdomain switch described here represents a general mechanism for initial conduction of regulatory signals in NCX variants.
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spelling pubmed-33869132012-07-05 A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation Giladi, Moshe Sasson, Yehezkel Fang, Xianyang Hiller, Reuben Buki, Tal Wang, Yun-Xing Hirsch, Joel A. Khananshvili, Daniel PLoS One Research Article Na(+)/Ca(2+) exchanger (NCX) proteins mediate Ca(2+)-fluxes across the cell membrane to maintain Ca(2+) homeostasis in many cell types. Eukaryotic NCX contains Ca(2+)-binding regulatory domains, CBD1 and CBD2. Ca(2+) binding to a primary sensor (Ca3-Ca4 sites) on CBD1 activates mammalian NCXs, whereas CALX, a Drosophila NCX ortholog, displays an inhibitory response to regulatory Ca(2+). To further elucidate the underlying regulatory mechanisms, we determined the 2.7 Å crystal structure of mammalian CBD12-E454K, a two-domain construct that retains wild-type properties. In conjunction with stopped-flow kinetics and SAXS (small-angle X-ray scattering) analyses of CBD12 mutants, we show that Ca(2+) binding to Ca3-Ca4 sites tethers the domains via a network of interdomain salt-bridges. This Ca(2+)-driven interdomain switch controls slow dissociation of “occluded” Ca(2+) from the primary sensor and thus dictates Ca(2+) sensing dynamics. In the Ca(2+)-bound conformation, the interdomain angle of CBD12 is very similar in NCX and CALX, meaning that the interdomain distances cannot account for regulatory diversity in NCX and CALX. Since the two-domain interface is nearly identical among eukaryotic NCXs, including CALX, we suggest that the Ca(2+)-driven interdomain switch described here represents a general mechanism for initial conduction of regulatory signals in NCX variants. Public Library of Science 2012-06-29 /pmc/articles/PMC3386913/ /pubmed/22768191 http://dx.doi.org/10.1371/journal.pone.0039985 Text en Giladi et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Giladi, Moshe
Sasson, Yehezkel
Fang, Xianyang
Hiller, Reuben
Buki, Tal
Wang, Yun-Xing
Hirsch, Joel A.
Khananshvili, Daniel
A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title_full A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title_fullStr A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title_full_unstemmed A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title_short A Common Ca(2+)-Driven Interdomain Module Governs Eukaryotic NCX Regulation
title_sort common ca(2+)-driven interdomain module governs eukaryotic ncx regulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3386913/
https://www.ncbi.nlm.nih.gov/pubmed/22768191
http://dx.doi.org/10.1371/journal.pone.0039985
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