Spindle poisons induce allelic loss in mouse lymphoma cells through mitotic non-disjunction

M Honma1, M Momose, H Sakamoto

  • 1Division of Genetics and Mutagenesis, National Institute of Health Sciences, 1-18-1 Kamiyoga, Setagaya-ku, Tokyo 158-8501, Japan. honma@nihs.go.jp

Mutation Research
|August 23, 2001
PubMed

Insights

Spindle poisons like colchicine and vinblastine induce mutations by causing whole chromosome 11 loss, not DNA damage. This aneuploidy mechanism may contribute to tumor development.

Area of Science:

  • Genetics
  • Molecular Biology
  • Cancer Research

Background:

  • Aneuploidy, an abnormal chromosome number, is linked to reproductive issues and cancer.
  • Spindle poisons, such as colchicine and vinblastine, are known mutagens.
  • The mouse lymphoma assay (MLA) is used to detect gene mutations.

Purpose of the Study:

  • To investigate the molecular mechanisms by which spindle poisons induce mutations.
  • To differentiate between structural DNA changes and whole chromosome loss in mutagenesis.

Main Methods:

  • Loss of heterozygosity (LOH) analysis at the thymidine kinase (tk) locus and across chromosome 11.
  • Cytogenetic analysis including chromosome painting.
  • Utilized mouse lymphoma L5178Y tk+/- 3.7.2c cells exposed to colchicine and vinblastine.

Main Results:

  • Colchicine and vinblastine induced mutations primarily through the loss of the entire chromosome 11 (mitotic non-disjunction).
  • Analysis revealed loss of heterozygosity across all examined markers on chromosome 11 in induced mutants.
  • No structural alterations (deletions, translocations) of chromosome 11 were observed in spindle poison-induced mutants.
  • Spontaneous mutants showed diverse mechanisms including point mutations, deletions, recombination, and whole chromosome loss.

Conclusions:

  • Spindle poisons induce mutations via aneuploidy (whole chromosome loss) without causing structural DNA damage.
  • This mechanism of mutation induction by aneuploidy may play a role in tumor formation.

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