Genomic mechanisms and measurement of structural and numerical instability in cancer cells

被引:96
作者
Bayani, Jane
Selvarajah, Shamini
Maire, Georges
Vukovic, Bisera
Al-Romaih, Khaldoun
Zielenska, Maria
Squire, Jeremy A.
机构
[1] Univ Hlth Network, Princess Margaret Hosp, Div Appl Mol Oncol, Toronto, ON M5G 2M9, Canada
[2] Univ Toronto, Hosp Sick Children, Dept Lab Med & Pathol, Toronto, ON M5G 1X8, Canada
[3] Univ Toronto, Dept Med Biophys, Toronto, ON M5G 2M9, Canada
[4] Univ Toronto, Ontario Canc Inst, Princess Margaret Hosp, Dept Lab Med & Pathobiol,Univ Hlth Network, Toronto, ON M5G 2M9, Canada
基金
加拿大创新基金会;
关键词
FISH; cancer stem cell; cellular clonality; DNA repair; chromosome architecture;
D O I
10.1016/j.semcancer.2006.10.006
中图分类号
R73 [肿瘤学];
学科分类号
100214 [肿瘤学];
摘要
The progression to cancer is often associated with instability and the acquisition of genomic heterogeneity, generating both clonal and non-clonal populations. Chromosomal instability (CIN) describes the excessive rate of numerical and structural genomic change in tumors. Mitotic segregation errors strongly influences copy number, while structural aberrations can occur at unstable genomic regions, or through aberrant DNA repair or methylation. Combined molecular cytogenetic analyses can evaluate cell-to-cell variation, and define the complexity of numerical and structural alterations. Because structural change may occur independently of numerical alteration, we propose the term structural chromosomal instability [(S)-CIN] to distinguish numerical from structural CIN. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:5 / 18
页数:14
相关论文
共 131 条
[1]
Translocation and gross deletion breakpolints in human inherited disease and cancer I: Nucleotide composition and recomblination-assocliated motifs [J].
Abeysinghe, SS ;
Chuzhanova, N ;
Krawczak, M ;
Ball, EV ;
Cooper, DN .
HUMAN MUTATION, 2003, 22 (03) :229-244
[2]
Chromosomal instability in osteosarcoma and its association with centrosome abnormalities [J].
Al-Romaih, K ;
Bayani, J ;
Vorobyova, J ;
Karaskova, J ;
Park, PC ;
Zielenska, M ;
Squire, JA .
CANCER GENETICS AND CYTOGENETICS, 2003, 144 (02) :91-99
[3]
Tetraploid state induces p53-dependent arrest of nontransformed mammalian cells in G1 [J].
Andreassen, PR ;
Lohez, OD ;
Lacroix, FB ;
Margolis, RL .
MOLECULAR BIOLOGY OF THE CELL, 2001, 12 (05) :1315-1328
[4]
Chemical induction of mitotic checkpoint override in mammalian cells results in aneuploidy following a transient tetraploid state [J].
Andreassen, PR ;
Martineau, SN ;
Margolis, RL .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 1996, 372 (02) :181-194
[5]
Causes of oncogenic chromosomal translocation [J].
Aplan, PD .
TRENDS IN GENETICS, 2006, 22 (01) :46-55
[6]
The genetics and genomics of cancer [J].
Balmain, A ;
Gray, J ;
Ponder, B .
NATURE GENETICS, 2003, 33 (Suppl 3) :238-244
[7]
Alu repeats and human genomic diversity [J].
Batzer, MA ;
Deininger, PL .
NATURE REVIEWS GENETICS, 2002, 3 (05) :370-379
[8]
Bayani J, 2002, CANCER RES, V62, P3466
[9]
Spectral karyotyping identifies recurrent complex rearrangements of chromosomes 8, 17, and 20 in osteosarcomas [J].
Bayani, J ;
Zielenska, M ;
Pandita, A ;
Al-Romaih, K ;
Karaskova, J ;
Harrison, K ;
Bridge, JA ;
Sorensen, P ;
Thorner, P ;
Squire, JA .
GENES CHROMOSOMES & CANCER, 2003, 36 (01) :7-16
[10]
Epigenetic gene silencing in cancer - a mechanism for early oncogenic pathway addiction? [J].
Baylin, SB ;
Ohm, JE .
NATURE REVIEWS CANCER, 2006, 6 (02) :107-116