4.8 Article

The Arabidopsis cyclophilin CYP18-1 facilitates PRP18 dephosphorylation and the splicing of introns retained under heat stress

Journal

PLANT CELL
Volume 34, Issue 6, Pages 2383-2403

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1093/plcell/koac084

Keywords

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Funding

  1. National Research Foundation of Korea (NRF) [2022R1A2B5B02002008]
  2. Korea Research Institute Bioscience and Biotechnology (KRIBB) Research Initiative Programs [KGM5372221, KGM9942213]
  3. UST Young Scientist Research Program 2021 through the University of Science and Technology [KFM0552111]
  4. National Research Council of Science & Technology (NST), Republic of Korea [KGM9942213, KGM5372221] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  5. National Research Foundation of Korea [2022R1A2B5B02002008] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Heat stress induces changes in alternative splicing in plants, including intron retention. CYP18-1 in Arabidopsis is found to be essential for efficient removal of retained introns during heat stress. CYP18-1 interacts with splicing factors and small nuclear RNAs, and regulates splicing process.
In plants, heat stress induces changes in alternative splicing, including intron retention; these events can rapidly alter proteins or downregulate protein activity, producing nonfunctional isoforms or inducing nonsense-mediated decay of messenger RNA (mRNA). Nuclear cyclophilins (CYPs) are accessory proteins in the spliceosome complexes of multicellular eukaryotes. However, whether plant CYPs are involved in pre-mRNA splicing remain unknown. Here, we found that Arabidopsis thaliana CYP18-1 is necessary for the efficient removal of introns that are retained in response to heat stress during germination. CYP18-1 interacts with Step II splicing factors (PRP18a, PRP22, and SWELLMAP1) and associates with the U2 and U5 small nuclear RNAs in response to heat stress. CYP18-1 binds to phospho-PRP18a, and increasing concentrations of CYP18-1 are associated with increasing dephosphorylation of PRP18a. Furthermore, interaction and protoplast transfection assays revealed that CYP18-1 and the PP2A-type phosphatase PP2A B ' n co-regulate PRP18a dephosphorylation. RNA-seq and RT-qPCR analysis confirmed that CYP18-1 is essential for splicing introns that are retained under heat stress. Overall, we reveal the mechanism of action by which CYP18-1 activates the dephosphorylation of PRP18 and show that CYP18-1 is crucial for the efficient splicing of retained introns and rapid responses to heat stress in plants. The spliceosome component CYP18-1 efficiently removes introns via a dephosphorylation-coupled mechanism in Arabidopsis in response to heat stress during seed germination.

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