Dual regulation of the receptor-like kinase BIR1 involves site-directed transcript cleavage and 5’-leader-mediated translational control

In Arabidopsis, BRASSINOSTEROID INSENSITIVE1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) - INTERACTING RECEPTOR-LIKE KINASE 1 (BIR1) is a negative regulator of plant immunity and cell death. BIR1 was earlier described as a target of epigenetic and post-transcriptional degradation. During virus infections, degradome analysis of BIR1 transcripts mapped predominant mRNA cleavage sites at the 5’-untranslated leader region (site A) and the protein-coding sequence (sites B and C). Here, we identified another virus-associated cleavage site (D) within the BIR1 coding region and investigated the contribution of site-directed mRNA cleavage to BIR1 regulation. Mutations at B, C, and D sites enhanced mRNA stability by impairing transcript cleavage, resulting in increased BIR1 mRNA and protein accumulation. This regulation is disrupted in RNA silencing mutants, supporting a model of cis -directed small interfering RNA (siRNA)-mediated degradation. We next demonstrate that virus infection reduces BIR1 translation in Arabidopsis. Furthermore, our data reveal a repressive role for the 5’-leader in regulating BIR1 translation, potentially mediated by upstream open reading frames (uORFs) and a virus-responsive long non-coding RNA (lncRNA) derived from the natural antisense At4g39838 locus. Together, these findings reveal a multilayered regulatory mechanism that integrates sRNA-mediated cleavage with translational control, with broader implications for the fine-tuning of stress-responsive gene expression during infection.

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Journal
PLoS Pathogens
Published
2026-09-15
DOI
https://doi.org/10.1371/journal.ppat.1014571
Primary Topic
Plant Virus Research Studies
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article
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article

Dual regulation of the receptor-like kinase BIR1 involves site-directed transcript cleavage and 5’-leader-mediated translational control

Lourdes Fernández‐Calvino, Carmen Robinson, César Llave, Catharina Merchante et al.
PLoS Pathogens
Plant Virus Research Studies
article

Dual regulation of the receptor-like kinase BIR1 involves site-directed transcript cleavage and 5’-leader-mediated translational control

Lourdes Fernández‐Calvino, Carmen Robinson, César Llave, Catharina Merchante, Irene Guzmán‐Benito, Ruixia Niu, Livia Donaire, Guoyong Xu, José M. Franco‐Zorrilla
article en

Abstract

In Arabidopsis, BRASSINOSTEROID INSENSITIVE1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) - INTERACTING RECEPTOR-LIKE KINASE 1 (BIR1) is a negative regulator of plant immunity and cell death. BIR1 was earlier described as a target of epigenetic and post-transcriptional degradation. During virus infections, degradome analysis of BIR1 transcripts mapped predominant mRNA cleavage sites at the 5’-untranslated leader region (site A) and the protein-coding sequence (sites B and C). Here, we identified another virus-associated cleavage site (D) within the BIR1 coding region and investigated the contribution of site-directed mRNA cleavage to BIR1 regulation. Mutations at B, C, and D sites enhanced mRNA stability by impairing transcript cleavage, resulting in increased BIR1 mRNA and protein accumulation. This regulation is disrupted in RNA silencing mutants, supporting a model of cis -directed small interfering RNA (siRNA)-mediated degradation. We next demonstrate that virus infection reduces BIR1 translation in Arabidopsis. Furthermore, our data reveal a repressive role for the 5’-leader in regulating BIR1 translation, potentially mediated by upstream open reading frames (uORFs) and a virus-responsive long non-coding RNA (lncRNA) derived from the natural antisense At4g39838 locus. Together, these findings reveal a multilayered regulatory mechanism that integrates sRNA-mediated cleavage with translational control, with broader implications for the fine-tuning of stress-responsive gene expression during infection.

PLoS PathogensVol. 22(9)
Consejo Superior de Investigaciones Científicas (ES), Unidades Centrales Científico-Técnicas (ES), Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora" (ES), Centro de Investigaciones Biológicas Margarita Salas (ES), Institut für Höhere Studien - Institute for Advanced Studies (IHS) (AT), Universidad Politécnica de Madrid (ES)
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Plant Virus Research Studies
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