Che-1/AATF binds to RNA polymerase I machinery and sustains ribosomal RNA gene transcription

Author:

Sorino Cristina12,Catena Valeria1,Bruno Tiziana1,De Nicola Francesca1,Scalera Stefano1,Bossi Gianluca3,Fabretti Francesca45,Mano Miguel6,De Smaele Enrico2,Fanciulli Maurizio1,Iezzi Simona1ORCID

Affiliation:

1. SAFU Laboratory, Department of Research, Advanced Diagnostics and Technological Innovation, Translational Research Area, IRCCS Regina Elena National Cancer Institute, 00144 Rome, Italy

2. Department of Experimental Medicine, Sapienza–University of Rome, 00161 Rome, Italy

3. Oncogenomic and Epigenetic Unit, Department of Research, Advanced Diagnostics and Technological Innovation, Translational Research Area, IRCCS Regina Elena National Cancer Institute, 00144 Rome, Italy

4. Department II of Internal Medicine and Center for Molecular Medicine Cologne, University of Cologne, Faculty of Medicine and University Hospital of Cologne, 50937 Cologne, Germany

5. CECAD, University of Cologne, Faculty of Medicine and University Hospital of Cologne, 50931 Cologne, Germany

6. Center for Neuroscience and Cell Biology (CNC), University of Coimbra, Coimbra 3060 197, Portugal

Abstract

AbstractOriginally identified as an RNA polymerase II interactor, Che-1/AATF (Che-1) has now been recognized as a multifunctional protein involved in cell-cycle regulation and cancer progression, as well as apoptosis inhibition and response to stress. This protein displays a peculiar nucleolar localization and it has recently been implicated in pre-rRNA processing and ribosome biogenesis. Here, we report the identification of a novel function of Che-1 in the regulation of ribosomal RNA (rRNA) synthesis, in both cancer and normal cells. We demonstrate that Che-1 interacts with RNA polymerase I and nucleolar upstream binding factor (UBF) and promotes RNA polymerase I-dependent transcription. Furthermore, this protein binds to the rRNA gene (rDNA) promoter and modulates its epigenetic state by contrasting the recruitment of HDAC1. Che-1 downregulation affects RNA polymerase I and UBF recruitment on rDNA and leads to reducing rDNA promoter activity and 47S pre-rRNA production. Interestingly, Che-1 depletion induces abnormal nucleolar morphology associated with re-distribution of nucleolar proteins. Finally, we show that upon DNA damage Che-1 re-localizes from rDNA to TP53 gene promoter to induce cell-cycle arrest. This previously uncharacterized function of Che-1 confirms the important role of this protein in the regulation of ribosome biogenesis, cellular proliferation and response to stress.

Funder

Italian Association for Cancer Research

Italian Ministery of Health - Ricerca Corrente 2019

Publisher

Oxford University Press (OUP)

Subject

Genetics

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