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Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte

In plants, HEN1-facilitated methylation at 3′ end ribose is a critical step of small-RNA (sRNA) biogenesis. A mutant of well-studied Arabidopsis HEN1 (AtHEN1), hen1-1, showed a defective developmental phenotype, indicating the importance of sRNA methylation. Moreover, Marchantia polymorpha has been...

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Autores principales: Sanobar, Neda, Lin, Pin-Chun, Pan, Zhao-Jun, Fang, Ru-Ying, Tjita, Veny, Chen, Fang-Fang, Wang, Hao-Ching, Tsai, Huang-Lung, Wu, Shu-Hsing, Shen, Tang-Long, Chen, Yan-Huey, Lin, Shih-Shun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473176/
https://www.ncbi.nlm.nih.gov/pubmed/34578418
http://dx.doi.org/10.3390/v13091837
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author Sanobar, Neda
Lin, Pin-Chun
Pan, Zhao-Jun
Fang, Ru-Ying
Tjita, Veny
Chen, Fang-Fang
Wang, Hao-Ching
Tsai, Huang-Lung
Wu, Shu-Hsing
Shen, Tang-Long
Chen, Yan-Huey
Lin, Shih-Shun
author_facet Sanobar, Neda
Lin, Pin-Chun
Pan, Zhao-Jun
Fang, Ru-Ying
Tjita, Veny
Chen, Fang-Fang
Wang, Hao-Ching
Tsai, Huang-Lung
Wu, Shu-Hsing
Shen, Tang-Long
Chen, Yan-Huey
Lin, Shih-Shun
author_sort Sanobar, Neda
collection PubMed
description In plants, HEN1-facilitated methylation at 3′ end ribose is a critical step of small-RNA (sRNA) biogenesis. A mutant of well-studied Arabidopsis HEN1 (AtHEN1), hen1-1, showed a defective developmental phenotype, indicating the importance of sRNA methylation. Moreover, Marchantia polymorpha has been identified to have a HEN1 ortholog gene (MpHEN1); however, its function remained unfathomed. Our in vivo and in vitro data have shown MpHEN1 activity being comparable with AtHEN1, and their substrate specificity towards duplex microRNA (miRNA) remained consistent. Furthermore, the phylogenetic tree and multiple alignment highlighted the conserved molecular evolution of the HEN1 family in plants. The P1/HC-Pro of the turnip mosaic virus (TuMV) is a known RNA silencing suppressor and inhibits HEN1 methylation of sRNAs. Here, we report that the HC-Pro physically binds with AtHEN1 through FRNK motif, inhibiting HEN1’s methylation activity. Moreover, the in vitro EMSA data indicates GST-HC-Pro of TuMV lacks sRNA duplex-binding ability. Surprisingly, the HC-Pro also inhibits MpHEN1 activity in a dosage-dependent manner, suggesting the possibility of interaction between HC-Pro and MpHEN1 as well. Further investigations on understanding interaction mechanisms of HEN1 and various HC-Pros can advance the knowledge of viral suppressors.
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spelling pubmed-84731762021-09-28 Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte Sanobar, Neda Lin, Pin-Chun Pan, Zhao-Jun Fang, Ru-Ying Tjita, Veny Chen, Fang-Fang Wang, Hao-Ching Tsai, Huang-Lung Wu, Shu-Hsing Shen, Tang-Long Chen, Yan-Huey Lin, Shih-Shun Viruses Article In plants, HEN1-facilitated methylation at 3′ end ribose is a critical step of small-RNA (sRNA) biogenesis. A mutant of well-studied Arabidopsis HEN1 (AtHEN1), hen1-1, showed a defective developmental phenotype, indicating the importance of sRNA methylation. Moreover, Marchantia polymorpha has been identified to have a HEN1 ortholog gene (MpHEN1); however, its function remained unfathomed. Our in vivo and in vitro data have shown MpHEN1 activity being comparable with AtHEN1, and their substrate specificity towards duplex microRNA (miRNA) remained consistent. Furthermore, the phylogenetic tree and multiple alignment highlighted the conserved molecular evolution of the HEN1 family in plants. The P1/HC-Pro of the turnip mosaic virus (TuMV) is a known RNA silencing suppressor and inhibits HEN1 methylation of sRNAs. Here, we report that the HC-Pro physically binds with AtHEN1 through FRNK motif, inhibiting HEN1’s methylation activity. Moreover, the in vitro EMSA data indicates GST-HC-Pro of TuMV lacks sRNA duplex-binding ability. Surprisingly, the HC-Pro also inhibits MpHEN1 activity in a dosage-dependent manner, suggesting the possibility of interaction between HC-Pro and MpHEN1 as well. Further investigations on understanding interaction mechanisms of HEN1 and various HC-Pros can advance the knowledge of viral suppressors. MDPI 2021-09-15 /pmc/articles/PMC8473176/ /pubmed/34578418 http://dx.doi.org/10.3390/v13091837 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sanobar, Neda
Lin, Pin-Chun
Pan, Zhao-Jun
Fang, Ru-Ying
Tjita, Veny
Chen, Fang-Fang
Wang, Hao-Ching
Tsai, Huang-Lung
Wu, Shu-Hsing
Shen, Tang-Long
Chen, Yan-Huey
Lin, Shih-Shun
Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title_full Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title_fullStr Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title_full_unstemmed Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title_short Investigating the Viral Suppressor HC-Pro Inhibiting Small RNA Methylation through Functional Comparison of HEN1 in Angiosperm and Bryophyte
title_sort investigating the viral suppressor hc-pro inhibiting small rna methylation through functional comparison of hen1 in angiosperm and bryophyte
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473176/
https://www.ncbi.nlm.nih.gov/pubmed/34578418
http://dx.doi.org/10.3390/v13091837
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