Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses

Agrofoglio YC, Iglesias MJ, Perez-Santangelo S, de Leone MJ, Köster T, Catala R, Salinas J, Yanovsky M, Staiger D, Mateos J (2024)
Plant Cell: koae051.

Zeitschriftenaufsatz | E-Veröff. vor dem Druck | Englisch
 
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Autor*in
Agrofoglio, Yamila Carla; Iglesias, Maria Jose; Perez-Santangelo, Soledad; de Leone, Maria Jose; Köster, TinoUniBi ; Catala, Rafael; Salinas, Julio; Yanovsky, Marcelo; Staiger, DorotheeUniBi; Mateos, JulietaUniBi
Abstract / Bemerkung
Arabidopsis (Arabidopsis thaliana) PROTEIN ARGININE METHYLTRANSFERASE5 (PRMT5) post-translationally modifies RNA-binding proteins by arginine (R) methylation. However, the impact of this modification on the regulation of RNA processing is largely unknown. We used the spliceosome component, SM-LIKE PROTEIN 4 (LSM4), as a paradigm to study the role of R-methylation in RNA processing. We found that LSM4 regulates alternative splicing (AS) of a suite of its in vivo targets identified here. The lsm4 and prmt5 mutants show a considerable overlap of genes with altered AS raising the possibility that splicing of those genes could be regulated by PRMT5-dependent LSM4 methylation. Indeed, LSM4 methylation impacts AS, particularly of genes linked with stress response. Wild-type LSM4 and an unmethylable version complement the lsm4-1 mutant, suggesting that methylation is not critical for growth in normal environments. However, LSM4 methylation increases with abscisic acid and is necessary for plants to grow under abiotic stress. Conversely, bacterial infection reduces LSM4 methylation, and plants that express unmethylable-LSM4 are more resistant to Pseudomonas than those expressing wild-type LSM4. This tolerance correlates with decreased intron retention of immune-response genes upon infection. Taken together, this provides direct evidence that R-methylation adjusts LSM4 function on pre-mRNA splicing in an antagonistic manner in response to biotic and abiotic stress. Arginine methylation of the spliceosome component SM-LIKE PROTEIN 4 by PROTEIN ARGININE METHYLTRANSFERASE5 fine-tunes alternative splicing of genes to control stress responses in Arabidopsis.
Erscheinungsjahr
2024
Zeitschriftentitel
Plant Cell
Art.-Nr.
koae051
ISSN
1040-4651
eISSN
1532-298X
Page URI
https://pub.uni-bielefeld.de/record/2988228

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Agrofoglio YC, Iglesias MJ, Perez-Santangelo S, et al. Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. Plant Cell. 2024: koae051.
Agrofoglio, Y. C., Iglesias, M. J., Perez-Santangelo, S., de Leone, M. J., Köster, T., Catala, R., Salinas, J., et al. (2024). Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. Plant Cell, koae051. https://doi.org/10.1093/plcell/koae051
Agrofoglio, Yamila Carla, Iglesias, Maria Jose, Perez-Santangelo, Soledad, de Leone, Maria Jose, Köster, Tino, Catala, Rafael, Salinas, Julio, Yanovsky, Marcelo, Staiger, Dorothee, and Mateos, Julieta. 2024. “Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses”. Plant Cell: koae051.
Agrofoglio, Y. C., Iglesias, M. J., Perez-Santangelo, S., de Leone, M. J., Köster, T., Catala, R., Salinas, J., Yanovsky, M., Staiger, D., and Mateos, J. (2024). Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. Plant Cell:koae051.
Agrofoglio, Y.C., et al., 2024. Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. Plant Cell, : koae051.
Y.C. Agrofoglio, et al., “Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses”, Plant Cell, 2024, : koae051.
Agrofoglio, Y.C., Iglesias, M.J., Perez-Santangelo, S., de Leone, M.J., Köster, T., Catala, R., Salinas, J., Yanovsky, M., Staiger, D., Mateos, J.: Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. Plant Cell. : koae051 (2024).
Agrofoglio, Yamila Carla, Iglesias, Maria Jose, Perez-Santangelo, Soledad, de Leone, Maria Jose, Köster, Tino, Catala, Rafael, Salinas, Julio, Yanovsky, Marcelo, Staiger, Dorothee, and Mateos, Julieta. “Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses”. Plant Cell (2024): koae051.

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