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Loss of centrioles causes chromosomal instability in vertebrate somatic cells

  • Joo-Hee Sir
  • , Monika Pütz
  • , Owen Daly
  • , Ciaran G. Morrison
  • , Mark Dunning
  • , John V. Kilmartin
  • , Fanni Gergely
  • Cancer Research UK Cambridge Institute
  • MRC Laboratory of Molecular Biology
  • University of Galway

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

106 Citations (Scopus)

Abstract

Most animal cells contain a centrosome, which comprises a pair of centrioles surrounded by an ordered pericentriolar matrix (PCM). Although the role of this organelle in organizing the mitotic spindle poles is well established, its precise contribution to cell division and cell survival remains a subject of debate. By genetically ablating key components of centriole biogenesis in chicken DT40 B cells, we generated multiple cell lines that lack centrioles. PCM components accumulated in acentriolar microtubule (MT)-organizing centers but failed to adopt a higher-order structure, as shown by three-dimensional structured illumination microscopy. Cells without centrioles exhibited both a delay in bipolar spindle assembly and a high rate of chromosomal instability. Collectively, our results expose a vital role for centrosomes in establishing a mitotic spindle geometry that facilitates correct kinetochore-MT attachments. We propose that centrosomes are essential in organisms in which rapid segregation of a large number of chromosomes needs to be attained with fidelity.

Original languageEnglish
Pages (from-to)747-756
Number of pages10
JournalJournal of Cell Biology
Volume203
Issue number5
DOIs
Publication statusPublished - 9 Dec 2013

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