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A CENP-S/X complex assembles at the centromere in S and G2 phases of the human cell cycle

  • C. Dornblut
  • , N. Quinn
  • , S. Monajambashi
  • , Lisa Prendergast
  • , Chelly Van Vuuren
  • , S. Munch
  • , W. Deng
  • , H. Leonhardt
  • , M. C. Cardoso
  • , C. Hoischen
  • , Stephan Diekmann
  • , K. F. Sullivan
  • FLI
  • University of Galway
  • Institut Curie
  • Ludwig-Maximilians-University Munich
  • Technical University of Darmstadt

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

26 Citations (Scopus)

Abstract

The functional identity of centromeres arises from a set of specific nucleoprotein particle subunits of the centromeric chromatin fibre. These include CENP - A and histone H3 nucleosomes and a novel nucleosome-like complex of CENPs -T, -W, -S and -X. Fluorescence cross-correlation spectroscopy and Förster resonance energy transfer (FRET) revealed that human CENP-S and -X exist principally in complex in soluble form and retain proximity when assembled at centromeres. Conditional labelling experiments show that they both assemble de novo during S phase and G2, increasing approximately three- to fourfold in abundance at centromeres. Fluorescence recovery after photobleaching (FRAP) measurements documented steady-state exchange between soluble and assembled pools, with CENP-X exchanging approximately 10 times faster than CENP-S (t1/2 ∼ 10 min versus 120 min). CENP-S binding to sites of DNA damage was quite distinct, with a FRAP half-time of approximately 160 s. Fluorescent two-hybrid analysis identified CENP-T as a uniquely strong CENP-S binding protein and this association was confirmed by FRET, revealing a centromere-bound complex containing CENP-S, CENP-X and CENP-T in proximity to histone H3 but not CENP-A. We propose that deposition of the CENP-T/W/S/X particle reveals a kinetochore-specific chromatin assembly pathway that functions to switch centromeric chromatin to a mitosis-competent state after DNA replication. Centromeres shuttle between CENP-A-rich, replication-competent and H3-CENP-T/W/S/X-rich mitosis-competent compositions in the cell cycle.

Original languageEnglish
Article number130229
JournalOpen Biology
Volume4
Issue numberFEB
DOIs
Publication statusPublished - 12 Feb 2014

Keywords

  • Centromere
  • Constitutive centromere-associated network
  • Kinetochore
  • Mitosis

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