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Proteasome inhibition alters mitotic progression through the upregulation of centromeric a-satellite RNAs

  1. Author:
    Cáceres-Gutiérrez, Rodrigo E
    Andonegui, Marco A
    Oliva-Rico, Diego A
    González-Barrios, Rodrigo
    Luna, Fernando
    Arriaga-Canon, Cristian
    López-Saavedra, Alejandro
    Prada, Diddier
    Castro, Clementina
    Parmentier, Laurent
    Díaz-Chávez, José
    Alfaro-Mora, Yair
    Navarro-Delgado, Erick I
    Fabian-Morales, Eunice
    Tran,Bao
    Shetty,Jyoti
    Zhao,Yongmei
    Alcaraz, Nicolas
    De la Rosa, Carlos
    Reyes, José L
    Hédouin, Sabrine
    Hubé, Florent
    Francastel, Claire
    Herrera, Luis A [ORCID]
  2. Author Address

    1 Unidad de Investigación Biomédica en Cáncer, Instituto Nacional de Cancerología-Instituto de Investigaciones Biomédicas, UNAM, 14080, Mexico City, Mexico. 2 Departamento de Informática Biomédica, Faculty of Medicine, Universidad Nacional Autónoma de México, UNAM, 04510, Mexico City, Mexico. 3 NCI CCR Sequencing Facility, Frederick National Laboratory for Cancer Research, 21702, Frederick, MD, USA. 4 The Bioinformatics Centre, University of Copenhagen, Ole Maaloes Vej 5, DK-2200, Copenhagen N, Denmark. 5 National Institute of Genomic Medicine, Arenal Tepepan, Periférico sur 4809, 14610, Mexico City, Mexico. 6 Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Av. Universidad 2001, Cuernavaca, Morelos, 62210, Mexico. 7 Université de Paris, CNRS UMR7216, Epigenetics and Cell Fate, 75205, Paris, France. 8 Fred Hutchinson Cancer Research, Basic Sciences division, Seattle, WA, 98109, USA. 9 Dirección General, Instituto Nacional de Medicina Genómica, Arenal Tepepan, Periférico Sur 4809, 1450, Tlalpan, Mexico City, Mexico.
    1. Year: 2021
    2. Date: Nov 05
    3. Epub Date: 2021 11 05
  1. Journal: The FEBS journal
  2. Type of Article: Article
  3. ISSN: 1742-464X
  1. Abstract:

    Cell cycle progression requires control of the abundance of several proteins and RNAs over space and time to properly transit from one phase to the next and to ensure faithful genomic inheritance in daughter cells. The proteasome, the main protein degradation system of the cell, facilitates the establishment of a proteome specific to each phase of the cell cycle. Its activity also strongly influences transcription. Here, we detected the upregulation of repetitive RNAs upon proteasome inhibition in human cancer cells using RNA-seq. The effect of proteasome inhibition on centromeres was remarkable, especially on a-Satellite RNAs. We showed that a-Satellite RNAs fluctuate along the cell cycle and interact with members of the cohesin ring, suggesting that these transcripts may take part in the regulation of mitotic progression. Next, we forced exogenous overexpression and used gapmer oligonucleotide targeting to demonstrate that a-Sat RNAs have regulatory roles in mitosis. Finally, we explored the transcriptional regulation of a-Satellite DNA. Through in silico analyses, we detected the presence of CCAAT transcription factor-binding motifs within a-Satellite centromeric arrays. Using high resolution three-dimensional immuno-FISH and ChIP-qPCR we showed an association between the a-Satellite upregulation and the recruitment of the transcription factor NFY-A to the centromere upon MG132-induced proteasome inhibition. Together, our results show that the proteasome controls a-Satellite RNAs associated to the regulation of mitosis. This article is protected by copyright. All rights reserved.

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External Sources

  1. DOI: 10.1111/febs.16261
  2. PMID: 34739170
  3. WOS: 000719874800001

Library Notes

  1. Fiscal Year: FY2021-2022
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