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Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells

Sweet potato chlorotic stunt virus (SPCSV; family Closteroviridae) encodes a Class 1 RNase III endoribonuclease (RNase3) that suppresses post-transcriptional RNA interference (RNAi) and eliminates antiviral defense in sweetpotato plants (Ipomoea batatas). For RNAi suppression, RNase3 cleaves double-...

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Autores principales: Weinheimer, Isabel, Haikonen, Tuuli, Ala-Poikela, Marjo, Moser, Mirko, Streng, Janne, Rajamäki, Minna-Liisa, Valkonen, Jari P. T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938523/
https://www.ncbi.nlm.nih.gov/pubmed/27391019
http://dx.doi.org/10.1371/journal.pone.0159080
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author Weinheimer, Isabel
Haikonen, Tuuli
Ala-Poikela, Marjo
Moser, Mirko
Streng, Janne
Rajamäki, Minna-Liisa
Valkonen, Jari P. T.
author_facet Weinheimer, Isabel
Haikonen, Tuuli
Ala-Poikela, Marjo
Moser, Mirko
Streng, Janne
Rajamäki, Minna-Liisa
Valkonen, Jari P. T.
author_sort Weinheimer, Isabel
collection PubMed
description Sweet potato chlorotic stunt virus (SPCSV; family Closteroviridae) encodes a Class 1 RNase III endoribonuclease (RNase3) that suppresses post-transcriptional RNA interference (RNAi) and eliminates antiviral defense in sweetpotato plants (Ipomoea batatas). For RNAi suppression, RNase3 cleaves double-stranded small interfering RNAs (ds-siRNA) and long dsRNA to fragments that are too short to be utilized in RNAi. However, RNase3 can suppress only RNAi induced by sense RNA. Sense-mediated RNAi involves host suppressor of gene silencing 3 (SGS3) and RNA–dependent RNA polymerase 6 (RDR6). In this study, subcellular localization and host interactions of RNase3 were studied in plant cells. RNase3 was found to interact with SGS3 of sweetpotato and Arabidopsis thaliana when expressed in leaves, and it localized to SGS3/RDR6 bodies in the cytoplasm of leaf cells and protoplasts. RNase3 was also detected in the nucleus. Co-expression of RNase3 and SGS3 in leaf tissue enhanced the suppression of RNAi, as compared with expression of RNase3 alone. These results suggest additional mechanisms needed for efficient RNase3-mediated suppression of RNAi and provide new information about the subcellular context and phase of the RNAi pathway in which RNase3 realizes RNAi suppression.
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spelling pubmed-49385232016-07-22 Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells Weinheimer, Isabel Haikonen, Tuuli Ala-Poikela, Marjo Moser, Mirko Streng, Janne Rajamäki, Minna-Liisa Valkonen, Jari P. T. PLoS One Research Article Sweet potato chlorotic stunt virus (SPCSV; family Closteroviridae) encodes a Class 1 RNase III endoribonuclease (RNase3) that suppresses post-transcriptional RNA interference (RNAi) and eliminates antiviral defense in sweetpotato plants (Ipomoea batatas). For RNAi suppression, RNase3 cleaves double-stranded small interfering RNAs (ds-siRNA) and long dsRNA to fragments that are too short to be utilized in RNAi. However, RNase3 can suppress only RNAi induced by sense RNA. Sense-mediated RNAi involves host suppressor of gene silencing 3 (SGS3) and RNA–dependent RNA polymerase 6 (RDR6). In this study, subcellular localization and host interactions of RNase3 were studied in plant cells. RNase3 was found to interact with SGS3 of sweetpotato and Arabidopsis thaliana when expressed in leaves, and it localized to SGS3/RDR6 bodies in the cytoplasm of leaf cells and protoplasts. RNase3 was also detected in the nucleus. Co-expression of RNase3 and SGS3 in leaf tissue enhanced the suppression of RNAi, as compared with expression of RNase3 alone. These results suggest additional mechanisms needed for efficient RNase3-mediated suppression of RNAi and provide new information about the subcellular context and phase of the RNAi pathway in which RNase3 realizes RNAi suppression. Public Library of Science 2016-07-08 /pmc/articles/PMC4938523/ /pubmed/27391019 http://dx.doi.org/10.1371/journal.pone.0159080 Text en © 2016 Weinheimer 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Weinheimer, Isabel
Haikonen, Tuuli
Ala-Poikela, Marjo
Moser, Mirko
Streng, Janne
Rajamäki, Minna-Liisa
Valkonen, Jari P. T.
Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title_full Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title_fullStr Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title_full_unstemmed Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title_short Viral RNase3 Co-Localizes and Interacts with the Antiviral Defense Protein SGS3 in Plant Cells
title_sort viral rnase3 co-localizes and interacts with the antiviral defense protein sgs3 in plant cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938523/
https://www.ncbi.nlm.nih.gov/pubmed/27391019
http://dx.doi.org/10.1371/journal.pone.0159080
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