Rrp14 controls rRNA transcription via facilitating the translocation of Pol5 into the nucleolus

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Abstract

Rrp14 is a conserved protein that plays an important role in rRNA processing and ribosomal biogenesis. In Schizosaccharomyces pombe, the rrp14 gene is split into SPAC8C9.10 c (rrp14) and SPBC947.07 (rrp1402). Although the SPAC8C9.10 c gene is not essential for S. pombe survival, deletion of the gene causes the yeast cells to grow sick and to exhibit decreased rRNA transcription. We identified a novel Pol5 protein that physically interacts with the Rrp14 protein. Taking advantage of the Pil1 co-tethering assay, we found that Rrp14 facilitates the nucleolus translocation of Pol5, and the 7-RINAWN-12 motif of the Rrp14 protein is responsible for the interaction between Pol5 and Rrp14. Since deletion of the 7-RINAWN-12 motif affects rRNA transcription, we thus propose that Rrp14 affects rRNA transcription by facilitating the nucleolus translocation of Pol5.

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Lin, Z., Liu, H., Chen, H., Cao, H., Liu, X., Zhu, H., … Chen, Z. (2022). Rrp14 controls rRNA transcription via facilitating the translocation of Pol5 into the nucleolus. Cell Cycle, 21(5), 489–500. https://doi.org/10.1080/15384101.2021.2023303

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