Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.

The NSP-interacting kinase (NIK) receptor-mediated defense pathway has been identified recently as a virulence target of the geminivirus nuclear shuttle protein (NSP). However, the NIK1-NSP interaction does not fit into the elicitor-receptor model of resistance, and hence the molecular mechanism tha...

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Main Authors: Claudine M Carvalho, Anésia A Santos, Silvana R Pires, Carolina S Rocha, Daniela I Saraiva, João Paulo B Machado, Eliciane C Mattos, Luciano G Fietto, Elizabeth P B Fontes
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-12-01
Series:PLoS Pathogens
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/19112492/pdf/?tool=EBI
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spelling doaj-33cb0e004f2b4697bd08312d2c1ba9452021-04-21T17:19:19ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742008-12-01412e100024710.1371/journal.ppat.1000247Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.Claudine M CarvalhoAnésia A SantosSilvana R PiresCarolina S RochaDaniela I SaraivaJoão Paulo B MachadoEliciane C MattosLuciano G FiettoElizabeth P B FontesThe NSP-interacting kinase (NIK) receptor-mediated defense pathway has been identified recently as a virulence target of the geminivirus nuclear shuttle protein (NSP). However, the NIK1-NSP interaction does not fit into the elicitor-receptor model of resistance, and hence the molecular mechanism that links this antiviral response to receptor activation remains obscure. Here, we identified a ribosomal protein, rpL10A, as a specific partner and substrate of NIK1 that functions as an immediate downstream effector of NIK1-mediated response. Phosphorylation of cytosolic rpL10A by NIK1 redirects the protein to the nucleus where it may act to modulate viral infection. While ectopic expression of normal NIK1 or a hyperactive NIK1 mutant promotes the accumulation of phosphorylated rpL10A within the nuclei, an inactive NIK1 mutant fails to redirect the protein to the nuclei of co-transfected cells. Likewise, a mutant rpL10A defective for NIK1 phosphorylation is not redirected to the nucleus. Furthermore, loss of rpL10A function enhances susceptibility to geminivirus infection, resembling the phenotype of nik1 null alleles. We also provide evidence that geminivirus infection directly interferes with NIK1-mediated nuclear relocalization of rpL10A as a counterdefensive measure. However, the NIK1-mediated defense signaling neither activates RNA silencing nor promotes a hypersensitive response but inhibits plant growth and development. Although the virulence function of the particular geminivirus NSP studied here overcomes this layer of defense in Arabidopsis, the NIK1-mediated signaling response may be involved in restricting the host range of other viruses.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/19112492/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Claudine M Carvalho
Anésia A Santos
Silvana R Pires
Carolina S Rocha
Daniela I Saraiva
João Paulo B Machado
Eliciane C Mattos
Luciano G Fietto
Elizabeth P B Fontes
spellingShingle Claudine M Carvalho
Anésia A Santos
Silvana R Pires
Carolina S Rocha
Daniela I Saraiva
João Paulo B Machado
Eliciane C Mattos
Luciano G Fietto
Elizabeth P B Fontes
Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
PLoS Pathogens
author_facet Claudine M Carvalho
Anésia A Santos
Silvana R Pires
Carolina S Rocha
Daniela I Saraiva
João Paulo B Machado
Eliciane C Mattos
Luciano G Fietto
Elizabeth P B Fontes
author_sort Claudine M Carvalho
title Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
title_short Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
title_full Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
title_fullStr Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
title_full_unstemmed Regulated nuclear trafficking of rpL10A mediated by NIK1 represents a defense strategy of plant cells against virus.
title_sort regulated nuclear trafficking of rpl10a mediated by nik1 represents a defense strategy of plant cells against virus.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2008-12-01
description The NSP-interacting kinase (NIK) receptor-mediated defense pathway has been identified recently as a virulence target of the geminivirus nuclear shuttle protein (NSP). However, the NIK1-NSP interaction does not fit into the elicitor-receptor model of resistance, and hence the molecular mechanism that links this antiviral response to receptor activation remains obscure. Here, we identified a ribosomal protein, rpL10A, as a specific partner and substrate of NIK1 that functions as an immediate downstream effector of NIK1-mediated response. Phosphorylation of cytosolic rpL10A by NIK1 redirects the protein to the nucleus where it may act to modulate viral infection. While ectopic expression of normal NIK1 or a hyperactive NIK1 mutant promotes the accumulation of phosphorylated rpL10A within the nuclei, an inactive NIK1 mutant fails to redirect the protein to the nuclei of co-transfected cells. Likewise, a mutant rpL10A defective for NIK1 phosphorylation is not redirected to the nucleus. Furthermore, loss of rpL10A function enhances susceptibility to geminivirus infection, resembling the phenotype of nik1 null alleles. We also provide evidence that geminivirus infection directly interferes with NIK1-mediated nuclear relocalization of rpL10A as a counterdefensive measure. However, the NIK1-mediated defense signaling neither activates RNA silencing nor promotes a hypersensitive response but inhibits plant growth and development. Although the virulence function of the particular geminivirus NSP studied here overcomes this layer of defense in Arabidopsis, the NIK1-mediated signaling response may be involved in restricting the host range of other viruses.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/19112492/pdf/?tool=EBI
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