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Rph1 coordinates transcription of ribosomal protein genes and ribosomal RNAs to control cell growth under nutrient stress conditions. | LitMetric

Rph1 coordinates transcription of ribosomal protein genes and ribosomal RNAs to control cell growth under nutrient stress conditions.

Nucleic Acids Res

Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, Wuhan University, Wuhan, Hubei 430072 China.

Published: September 2020

AI Article Synopsis

  • The study investigates how Rph1 regulates the transcription of ribosomal RNA (rRNA) and ribosomal protein genes (RPGs) in yeast, which is crucial for cellular growth control.
  • Rph1 is shown to interact with both RNA polymerase I (RNAPI) and RNA polymerase II (RNAPII) genes, and its deletion improves growth in nutrient-stressed conditions by enhancing rRNA and RPG transcription.
  • The research suggests that Rim15 kinase phosphorylates Rph1 during nutrient stress, and this modification promotes cell growth and survival by causing Rph1 to dissociate from chromatin, thus coordinating transcription processes.

Article Abstract

Coordinated regulation of ribosomal RNA (rRNA) synthesis and ribosomal protein gene (RPG) transcription by eukaryotic RNA polymerases (RNAP) is a key requirement for growth control. Although evidence for balance between RNPI-dependent 35S rRNA production and RNAPII-mediated RPG transcription have been described, the molecular basis is still obscure. Here, we found that Rph1 modulates the transcription status of both rRNAs and RPGs in yeast. We show that Rph1 widely associates with RNAPI and RNAPII-transcribed genes. Deletion of RPH1 remarkably alleviates cell slow growth caused by TORC1 inhibition via derepression of rRNA and RPG transcription under nutrient stress conditions. Mechanistically, Rim15 kinase phosphorylates Rph1 upon rapamycin treatment. Phosphorylation-mimetic mutant of Rph1 exhibited more resistance to rapamycin treatment, decreased association with ribosome-related genes, and faster cell growth compared to the wild-type, indicating that Rph1 dissociation from chromatin ensures cell survival upon nutrient stress. Our results uncover the role of Rph1 in coordination of RNA polymerases-mediated transcription to control cell growth under nutrient stress conditions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7470948PMC
http://dx.doi.org/10.1093/nar/gkaa558DOI Listing

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