The Evolution of Single Cell-derived Colorectal Cancer Cell Lines is Dominated by the Continued Selection of Tumor Specific Genomic Imbalances, Despite Random Chromosomal Instability

Publication date

2018-05-23

Authors

Wangsa, Darawalee
Braun, Rüdiger
Schiefer, Madison
Gertz, E Michael
Bronder, Daniel
Quintanilla, Isabel
Padilla-Nash, Hesed M
Torres, Irianna
Hunn, Cynthia
Warner, Lidia

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Intratumor heterogeneity is a major challenge in cancer treatment. To decipher patterns of chromosomal heterogeneity, we analyzed six colorectal cancer cell lines by multiplex interphase FISH (miFISH). The mismatch repair deficient cell lines DLD-1 and HCT116 had the most stable copy numbers, whereas aneuploid cell lines (HT-29, SW480, SW620 and H508) displayed a higher degree of instability. We subsequently assessed the clonal evolution of single cells in two CRC cell lines, SW480 and HT-29, which both have aneuploid karyotypes but different degrees of chromosomal instability. The clonal compositions of the single cell-derived daughter lines, as assessed by miFISH, differed for HT-29 and SW480. Daughters of HT-29 were stable, clonal, with little heterogeneity. Daughters of SW480 were more heterogeneous, with the single cell-derived daughter lines separating into two distinct populations with different ploidy (hyper-diploid and near-triploid), morphology, gene expression and tumorigenicity. To better understand the evolutionary trajectory for the two SW480 populations, we constructed phylogenetic trees which showed ongoing instability in the daughter lines. When analyzing the evolutionary development over time, most single cell-derived daughter lines maintained their major clonal pattern, with the exception of one daughter line that showed a switch involving a loss of APC. Our meticulous analysis of the clonal evolution and composition of these colorectal cancer models shows that all chromosomes are subject to segregation errors, however, specific net genomic imbalances are maintained. Karyotype evolution is driven by the necessity to arrive at and maintain a specific plateau of chromosomal copy numbers as the drivers of carcinogenesis.

Keywords

Taverne, SDG 3 - Good Health and Well-being

Citation

Wangsa, D, Braun, R, Schiefer, M, Gertz, E M, Bronder, D, Quintanilla, I, Padilla-Nash, H M, Torres, I, Hunn, C, Warner, L, Buishand, F O, Hu, Y, Hirsch, D, Gaiser, T, Camps, J, Schwartz, R, Schäffer, A A, Heselmeyer-Haddad, K & Ried, T 2018, 'The Evolution of Single Cell-derived Colorectal Cancer Cell Lines is Dominated by the Continued Selection of Tumor Specific Genomic Imbalances, Despite Random Chromosomal Instability', Carcinogenesis, vol. 39, no. 8, pp. 993-1005. https://doi.org/10.1093/carcin/bgy068