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Independent mechanisms lead to genomic instability in Hodgkin lymphoma: Microsatellite or chromosomal instability

  • Corina Cuceu
  • , Bruno Colicchio
  • , Eric Jeandidier
  • , Steffen Junker
  • , François Plassa
  • , Grace Shim
  • , Justyna Mika
  • , Monika Frenzel
  • , Mustafa A.L. Jawhari
  • , William M. Hempel
  • , Grainne O’Brien
  • , Aude Lenain
  • , Luc Morat
  • , Theodore Girinsky
  • , Alain Dieterlen
  • , Joanna Polanska
  • , Christophe Badie
  • , Patrice Carde
  • , Radhia M’Kacher
  • Commissariat à l’énergie atomique et aux énergies alternatives
  • Université de Haute-Alsace
  • Groupe Hospitalier de la Région de Mulhouse Sud-Alsace
  • Aarhus University
  • Université Paris Cité
  • UK Health Security Agency
  • University Paris Saclay
  • Cell Environment DNA Damages R&D Oncology Section

Research output: Contribution to journalArticlepeer-review

18 Citations (Scopus)

Abstract

Background: Microsatellite and chromosomal instability have been investigated in Hodgkin lymphoma (HL). Materials and Methods: We studied seven HL cell lines (five Nodular Sclerosis (NS) and two Mixed Cellularity (MC)) and patient peripheral blood lymphocytes (100 NS-HL and 23 MC-HL). Microsatellite instability (MSI) was assessed by PCR. Chromosomal instability and telomere dysfunction were investigated by FISH. DNA repair mechanisms were studied by transcriptomic and molecular approaches. Results: In the cell lines, we observed highMSI in L428 (4/5), KMH2, and HDLM2 (3/5), low MSI in L540, L591, and SUP-HD1, and none in L1236. NS-HL cell lines showed telomere shortening, associated with alterations of nuclear shape. Small cells were characterized by telomere loss and deletion, leading to chromosomal fusion, large nucleoplasmic bridges, and breakage/fusion/bridge (B/F/B) cycles, leading to chromosomal instability. TheMC-HL cell lines showed substantial heterogeneity of telomere length. Intrachromosmal double strand breaks induced dicentric chromosome formation, high levels of micronucleus formation, and small nucleoplasmic bridges. B/F/B cycles induced complex chromosomal rearrangements. We observed a similar pattern in circulating lymphocytes of NS-HL andMC-HL patients. Transcriptome analysis confirmed the differences in the DNA repair pathways between the NS andMC cell lines. In addition, the NS-HL cell lines were radiosensitive and the MC-cell lines resistant to apoptosis after radiation exposure. Conclusions: In mononuclear NS-HL cells, loss of telomere integrity may present the first step in the ongoing process of chromosomal instability. Here, we identified, MSI as an additional mechanism for genomic instability in HL.

Original languageEnglish
Article number233
JournalCancers
Volume10
Issue number7
DOIs
Publication statusPublished - 13 Jul 2018

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Chromosomal instability
  • Dicentric
  • Hodgkin lymphoma
  • MSI
  • P53
  • Telomere dysfunction

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

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