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Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family

BACKGROUND: The Na(+)-Ca(2+ )exchanger (NCX) is an important regulator of cytosolic Ca(2+ )levels. Many of its structural features are highly conserved across a wide range of species. Invertebrates have a single NCX gene, whereas vertebrate species have multiple NCX genes as a result of at least two...

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Autores principales: On, Caly, Marshall, Christian R, Chen, Nansheng, Moyes, Christopher D, Tibbits, Glen F
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2408596/
https://www.ncbi.nlm.nih.gov/pubmed/18447948
http://dx.doi.org/10.1186/1471-2148-8-127
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author On, Caly
Marshall, Christian R
Chen, Nansheng
Moyes, Christopher D
Tibbits, Glen F
author_facet On, Caly
Marshall, Christian R
Chen, Nansheng
Moyes, Christopher D
Tibbits, Glen F
author_sort On, Caly
collection PubMed
description BACKGROUND: The Na(+)-Ca(2+ )exchanger (NCX) is an important regulator of cytosolic Ca(2+ )levels. Many of its structural features are highly conserved across a wide range of species. Invertebrates have a single NCX gene, whereas vertebrate species have multiple NCX genes as a result of at least two duplication events. To examine the molecular evolution of NCX genes and understand the role of duplicated genes in the evolution of the vertebrate NCX gene family, we carried out phylogenetic analyses of NCX genes and compared NCX gene structures from sequenced genomes and individual clones. RESULTS: A single NCX in invertebrates and the protochordate Ciona, and the presence of at least four NCX genes in the genomes of teleosts, an amphibian, and a reptile suggest that a four member gene family arose in a basal vertebrate. Extensive examination of mammalian and avian genomes and synteny analysis argue that NCX4 may be lost in these lineages. Duplicates for NCX1, NCX2, and NCX4 were found in all sequenced teleost genomes. The presence of seven genes encoding NCX homologs may provide teleosts with the functional specialization analogous to the alternate splicing strategy seen with the three NCX mammalian homologs. CONCLUSION: We have demonstrated that NCX4 is present in teleost, amphibian and reptilian species but has been secondarily and independently lost in mammals and birds. Comparative studies on conserved vertebrate homologs have provided a possible evolutionary route taken by gene duplicates subfunctionalization by minimizing homolog number.
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spelling pubmed-24085962008-05-31 Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family On, Caly Marshall, Christian R Chen, Nansheng Moyes, Christopher D Tibbits, Glen F BMC Evol Biol Research Article BACKGROUND: The Na(+)-Ca(2+ )exchanger (NCX) is an important regulator of cytosolic Ca(2+ )levels. Many of its structural features are highly conserved across a wide range of species. Invertebrates have a single NCX gene, whereas vertebrate species have multiple NCX genes as a result of at least two duplication events. To examine the molecular evolution of NCX genes and understand the role of duplicated genes in the evolution of the vertebrate NCX gene family, we carried out phylogenetic analyses of NCX genes and compared NCX gene structures from sequenced genomes and individual clones. RESULTS: A single NCX in invertebrates and the protochordate Ciona, and the presence of at least four NCX genes in the genomes of teleosts, an amphibian, and a reptile suggest that a four member gene family arose in a basal vertebrate. Extensive examination of mammalian and avian genomes and synteny analysis argue that NCX4 may be lost in these lineages. Duplicates for NCX1, NCX2, and NCX4 were found in all sequenced teleost genomes. The presence of seven genes encoding NCX homologs may provide teleosts with the functional specialization analogous to the alternate splicing strategy seen with the three NCX mammalian homologs. CONCLUSION: We have demonstrated that NCX4 is present in teleost, amphibian and reptilian species but has been secondarily and independently lost in mammals and birds. Comparative studies on conserved vertebrate homologs have provided a possible evolutionary route taken by gene duplicates subfunctionalization by minimizing homolog number. BioMed Central 2008-04-30 /pmc/articles/PMC2408596/ /pubmed/18447948 http://dx.doi.org/10.1186/1471-2148-8-127 Text en Copyright ©2008 On et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
On, Caly
Marshall, Christian R
Chen, Nansheng
Moyes, Christopher D
Tibbits, Glen F
Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title_full Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title_fullStr Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title_full_unstemmed Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title_short Gene Structure Evolution of the Na(+)-Ca(2+ )Exchanger (NCX) Family
title_sort gene structure evolution of the na(+)-ca(2+ )exchanger (ncx) family
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2408596/
https://www.ncbi.nlm.nih.gov/pubmed/18447948
http://dx.doi.org/10.1186/1471-2148-8-127
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