Condensin II mutation causes T-cell lymphoma through tissue-specific genome instability.
Jessica WoodwardGillian C TaylorDinesh C SoaresShelagh BoyleDaoud SieDavid ReadKeerthi ChathothMilica VukovicNuria TarratsDavid JamiesonKirsteen J CampbellKaren BlythJuan Carlos AcostaBauke YlstraMark J ArendsKamil R KrancAndrew P JacksonWendy A BickmoreAndrew J WoodPublished in: Genes & development (2016)
Chromosomal instability is a hallmark of cancer, but mitotic regulators are rarely mutated in tumors. Mutations in the condensin complexes, which restructure chromosomes to facilitate segregation during mitosis, are significantly enriched in cancer genomes, but experimental evidence implicating condensin dysfunction in tumorigenesis is lacking. We report that mice inheriting missense mutations in a condensin II subunit (Caph2nes) develop T-cell lymphoma. Before tumors develop, we found that the same Caph2 mutation impairs ploidy maintenance to a different extent in different hematopoietic cell types, with ploidy most severely perturbed at the CD4+CD8+ T-cell stage from which tumors initiate. Premalignant CD4+CD8+ T cells show persistent catenations during chromosome segregation, triggering DNA damage in diploid daughter cells and elevated ploidy. Genome sequencing revealed that Caph2 single-mutant tumors are near diploid but carry deletions spanning tumor suppressor genes, whereas P53 inactivation allowed Caph2 mutant cells with whole-chromosome gains and structural rearrangements to form highly aggressive disease. Together, our data challenge the view that mitotic chromosome formation is an invariant process during development and provide evidence that defective mitotic chromosome structure can promote tumorigenesis.
Keyphrases
- copy number
- induced apoptosis
- dna damage
- papillary thyroid
- single cell
- cell cycle arrest
- genome wide
- oxidative stress
- cell cycle
- wild type
- squamous cell
- cell death
- cell proliferation
- dna methylation
- lymph node metastasis
- type diabetes
- signaling pathway
- metabolic syndrome
- bone marrow
- gene expression
- electronic health record
- squamous cell carcinoma
- pi k akt
- adipose tissue
- mesenchymal stem cells
- high fat diet induced
- artificial intelligence
- autism spectrum disorder
- bioinformatics analysis