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A functional calcium-transporting ATPase encoded by chlorella viruses

Calcium-transporting ATPases (Ca(2+) pumps) are major players in maintaining calcium homeostasis in the cell and have been detected in all cellular organisms. Here, we report the identification of two putative Ca(2+) pumps, M535L and C785L, encoded by chlorella viruses MT325 and AR158, respectively,...

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Autores principales: Bonza, Maria Cristina, Martin, Holger, Kang, Ming, Lewis, Gentry, Greiner, Timo, Giacometti, Sonia, Van Etten, James L., De Michelis, Maria Ida, Thiel, Gerhard, Moroni, Anna
Formato: Texto
Lenguaje:English
Publicado: Society for General Microbiology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3052600/
https://www.ncbi.nlm.nih.gov/pubmed/20573858
http://dx.doi.org/10.1099/vir.0.021873-0
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author Bonza, Maria Cristina
Martin, Holger
Kang, Ming
Lewis, Gentry
Greiner, Timo
Giacometti, Sonia
Van Etten, James L.
De Michelis, Maria Ida
Thiel, Gerhard
Moroni, Anna
author_facet Bonza, Maria Cristina
Martin, Holger
Kang, Ming
Lewis, Gentry
Greiner, Timo
Giacometti, Sonia
Van Etten, James L.
De Michelis, Maria Ida
Thiel, Gerhard
Moroni, Anna
author_sort Bonza, Maria Cristina
collection PubMed
description Calcium-transporting ATPases (Ca(2+) pumps) are major players in maintaining calcium homeostasis in the cell and have been detected in all cellular organisms. Here, we report the identification of two putative Ca(2+) pumps, M535L and C785L, encoded by chlorella viruses MT325 and AR158, respectively, and the functional characterization of M535L. Phylogenetic and sequence analyses place the viral proteins in group IIB of P-type ATPases even though they lack a typical feature of this class, a calmodulin-binding domain. A Ca(2+) pump gene is present in 45 of 47 viruses tested and is transcribed during virus infection. Complementation analysis of the triple yeast mutant K616 confirmed that M535L transports calcium ions and, unusually for group IIB pumps, also manganese ions. In vitro assays show basal ATPase activity. This activity is inhibited by vanadate, but, unlike that of other Ca(2+) pumps, is not significantly stimulated by either calcium or manganese. The enzyme forms a (32)P-phosphorylated intermediate, which is inhibited by vanadate and not stimulated by the transported substrate Ca(2+), thus confirming the peculiar properties of this viral pump. To our knowledge this is the first report of a functional P-type Ca(2+)-transporting ATPase encoded by a virus.
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spelling pubmed-30526002011-10-01 A functional calcium-transporting ATPase encoded by chlorella viruses Bonza, Maria Cristina Martin, Holger Kang, Ming Lewis, Gentry Greiner, Timo Giacometti, Sonia Van Etten, James L. De Michelis, Maria Ida Thiel, Gerhard Moroni, Anna J Gen Virol Plant Calcium-transporting ATPases (Ca(2+) pumps) are major players in maintaining calcium homeostasis in the cell and have been detected in all cellular organisms. Here, we report the identification of two putative Ca(2+) pumps, M535L and C785L, encoded by chlorella viruses MT325 and AR158, respectively, and the functional characterization of M535L. Phylogenetic and sequence analyses place the viral proteins in group IIB of P-type ATPases even though they lack a typical feature of this class, a calmodulin-binding domain. A Ca(2+) pump gene is present in 45 of 47 viruses tested and is transcribed during virus infection. Complementation analysis of the triple yeast mutant K616 confirmed that M535L transports calcium ions and, unusually for group IIB pumps, also manganese ions. In vitro assays show basal ATPase activity. This activity is inhibited by vanadate, but, unlike that of other Ca(2+) pumps, is not significantly stimulated by either calcium or manganese. The enzyme forms a (32)P-phosphorylated intermediate, which is inhibited by vanadate and not stimulated by the transported substrate Ca(2+), thus confirming the peculiar properties of this viral pump. To our knowledge this is the first report of a functional P-type Ca(2+)-transporting ATPase encoded by a virus. Society for General Microbiology 2010-10 /pmc/articles/PMC3052600/ /pubmed/20573858 http://dx.doi.org/10.1099/vir.0.021873-0 Text en Copyright © 2010, SGM
spellingShingle Plant
Bonza, Maria Cristina
Martin, Holger
Kang, Ming
Lewis, Gentry
Greiner, Timo
Giacometti, Sonia
Van Etten, James L.
De Michelis, Maria Ida
Thiel, Gerhard
Moroni, Anna
A functional calcium-transporting ATPase encoded by chlorella viruses
title A functional calcium-transporting ATPase encoded by chlorella viruses
title_full A functional calcium-transporting ATPase encoded by chlorella viruses
title_fullStr A functional calcium-transporting ATPase encoded by chlorella viruses
title_full_unstemmed A functional calcium-transporting ATPase encoded by chlorella viruses
title_short A functional calcium-transporting ATPase encoded by chlorella viruses
title_sort functional calcium-transporting atpase encoded by chlorella viruses
topic Plant
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3052600/
https://www.ncbi.nlm.nih.gov/pubmed/20573858
http://dx.doi.org/10.1099/vir.0.021873-0
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