Abstract
Arginine (R) methylation, catalyzed by PROTEIN ARGININE METHYLTRANSFERASES (PRMTs), is critical for regulation of gene expression at the transcriptional and post-transcriptional level. Among nine PRMT genes in Arabidopsis, PRMT5 catalyzing symmetric R dimethylation of its targets is best characterized. PRMT5 mutants are late flowering and show altered responses to environmental stress. Among PRMT5 targets are Arabidopsis thaliana GLYCINE RICH RNA BINDING PROTEIN 7 ( At GRP7) and At GRP8 that promote the transition to flowering. At GRP7 R141 has been shown to be modified by PRMT5. Here, we tested whether this symmetric dimethylation of R141 is important for At GRP7’s physiological role in flowering time control. We constructed At GRP7 mutant variants with non-methylable R141 (R141A, R141K). Genomic clones containing these variants complemented the late flowering phenotype of the grp7-1 mutant to the same extend as wild-type At GRP7. Furthermore, overexpression of At GRP7 R141A or R141K promoted flowering similar to overexpression of the wild-type protein. Thus, flowering time does not depend on R141 and its modification. However, At GRP7 R141 contributes to the activity of GRP7 in response to abscisic. Immunoprecipitation of At GRP7-GFP in the prmt5 background revealed that antibodies against dimethylated arginine still recognized At GRP7, suggesting that additional methyltransferases may be responsible for modification of At GRP7.
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Abstract
Arginine (R) methylation, catalyzed by PROTEIN ARGININE METHYLTRANSFERASES (PRMTs), is critical for regulation of gene expression at the transcriptional and post-transcriptional level. Among nine PRMT genes in Arabidopsis, PRMT5 catalyzing symmetric R dimethylation of its targets is best characterized. PRMT5 mutants are late flowering and show altered responses to environmental stress. Among PRMT5 targets are Arabidopsis thaliana GLYCINE RICH RNA BINDING PROTEIN 7 (AtGRP7) and AtGRP8 that promote the transition to flowering. AtGRP7 R141 has been shown to be modified by PRMT5. Here, we tested whether this symmetric dimethylation of R141 is important for AtGRP7’s physiological role in flowering time control. We constructed AtGRP7 mutant variants with non-methylable R141 (R141A, R141K). Genomic clones containing these variants complemented the late flowering phenotype of the grp7-1 mutant to the same extend as wild-type AtGRP7. Furthermore, overexpression of AtGRP7 R141A or R141K promoted flowering similar to overexpression of the wild-type protein. Thus, flowering time does not depend on R141 and its modification. However, AtGRP7 R141 contributes to the activity of GRP7 in response to abscisic. Immunoprecipitation of AtGRP7-GFP in the prmt5 background revealed that antibodies against dimethylated arginine still recognized AtGRP7, suggesting that additional methyltransferases may be responsible for modification of AtGRP7.
Competing Interest Statement
The authors have declared no competing interest.
Footnotes
alexander.steffen{at}uni-bielefeld.de (AS); katarzyna.dombert{at}uni-bielefeld.de (KD); Christine.nolte{at}uni-bielefeld.de (CN);
miglesias{at}fbmc.fcen.uba.ar (MJI),
mjdeleone{at}leloir.org.ar (MJL); mjyanovsky{at}leloir.org.ar (MJY)
↵+ joint first authors
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