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Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation

Post-translational methylation of arginine residues profoundly affects the structure and functions of protein and, hence, implicated in a myriad of essential cellular processes such as signal transduction, mRNA splicing and transcriptional regulation. Protein arginine methyltransferases (PRMTs), the...

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Autores principales: Ahmad, Ayaz, Dong, Yuzhu, Cao, Xiaofeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3154905/
https://www.ncbi.nlm.nih.gov/pubmed/21853042
http://dx.doi.org/10.1371/journal.pone.0022664
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author Ahmad, Ayaz
Dong, Yuzhu
Cao, Xiaofeng
author_facet Ahmad, Ayaz
Dong, Yuzhu
Cao, Xiaofeng
author_sort Ahmad, Ayaz
collection PubMed
description Post-translational methylation of arginine residues profoundly affects the structure and functions of protein and, hence, implicated in a myriad of essential cellular processes such as signal transduction, mRNA splicing and transcriptional regulation. Protein arginine methyltransferases (PRMTs), the enzymes catalyzing arginine methylation have been extensively studied in animals, yeast and, to some extent, in model plant Arabidopsis thaliana. Eight genes coding for the PRMTs were identified in Oryza sativa, previously. Here, we report that these genes show distinct expression patterns in various parts of the plant. In vivo targeting experiment demonstrated that GFP-tagged OsPRMT1, OsPRMT5 and OsPRMT10 were localized to both the cytoplasm and nucleus, whereas OsPRMT6a and OsPRMT6b were predominantly localized to the nucleus. OsPRMT1, OsPRMT4, OsPRMT5, OsPRMT6a, OsPRMT6b and OsPRMT10 exhibited in vitro arginine methyltransferase activity against myelin basic protein, glycine-arginine-rich domain of fibrillarin and calf thymus core histones. Furthermore, they depicted specificities for the arginine residues in histones H3 and H4 and were classified into type I and Type II PRMTs, based on the formation of type of dimethylarginine in the substrate proteins. The two homologs of OsPRMT6 showed direct interaction in vitro and further titrating different amounts of these proteins in the methyltransferase assay revealed that OsPRMT6a inhibits the methyltransferase activity of OsPRMT6b, probably, by the formation of heterodimer. The identification and characterization of PRMTs in rice suggests the conservation of arginine methylation in monocots and hold promise for gaining further insight into regulation of plant development.
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spelling pubmed-31549052011-08-18 Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation Ahmad, Ayaz Dong, Yuzhu Cao, Xiaofeng PLoS One Research Article Post-translational methylation of arginine residues profoundly affects the structure and functions of protein and, hence, implicated in a myriad of essential cellular processes such as signal transduction, mRNA splicing and transcriptional regulation. Protein arginine methyltransferases (PRMTs), the enzymes catalyzing arginine methylation have been extensively studied in animals, yeast and, to some extent, in model plant Arabidopsis thaliana. Eight genes coding for the PRMTs were identified in Oryza sativa, previously. Here, we report that these genes show distinct expression patterns in various parts of the plant. In vivo targeting experiment demonstrated that GFP-tagged OsPRMT1, OsPRMT5 and OsPRMT10 were localized to both the cytoplasm and nucleus, whereas OsPRMT6a and OsPRMT6b were predominantly localized to the nucleus. OsPRMT1, OsPRMT4, OsPRMT5, OsPRMT6a, OsPRMT6b and OsPRMT10 exhibited in vitro arginine methyltransferase activity against myelin basic protein, glycine-arginine-rich domain of fibrillarin and calf thymus core histones. Furthermore, they depicted specificities for the arginine residues in histones H3 and H4 and were classified into type I and Type II PRMTs, based on the formation of type of dimethylarginine in the substrate proteins. The two homologs of OsPRMT6 showed direct interaction in vitro and further titrating different amounts of these proteins in the methyltransferase assay revealed that OsPRMT6a inhibits the methyltransferase activity of OsPRMT6b, probably, by the formation of heterodimer. The identification and characterization of PRMTs in rice suggests the conservation of arginine methylation in monocots and hold promise for gaining further insight into regulation of plant development. Public Library of Science 2011-08-11 /pmc/articles/PMC3154905/ /pubmed/21853042 http://dx.doi.org/10.1371/journal.pone.0022664 Text en Ahmad 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ahmad, Ayaz
Dong, Yuzhu
Cao, Xiaofeng
Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title_full Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title_fullStr Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title_full_unstemmed Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title_short Characterization of the PRMT Gene Family in Rice Reveals Conservation of Arginine Methylation
title_sort characterization of the prmt gene family in rice reveals conservation of arginine methylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3154905/
https://www.ncbi.nlm.nih.gov/pubmed/21853042
http://dx.doi.org/10.1371/journal.pone.0022664
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