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1:
Nature.
2005 Apr 14;434(7035):864-70.
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Comment in:
Nature. 2005 Apr 14;434(7035):829-30.
DNA damage response as a candidate anti-cancer barrier in early human tumorigenesis.
Bartkova J
,
Horejsí Z
,
Koed K
,
Krämer A
,
Tort F
,
Zieger K
,
Guldberg P
,
Sehested M
,
Nesland JM
,
Lukas C
,
Ørntoft T
,
Lukas J
,
Bartek J
.
Institute of Cancer Biology and Centre for Genotoxic Stress Research, Danish Cancer Society, Strandboulevarden 49, DK-2100 Copenhagen, Denmark. jb@cancer.dk
During the evolution of cancer, the incipient tumour experiences 'oncogenic stress', which evokes a counter-response to eliminate such hazardous cells. However, the nature of this stress remains elusive, as does the inducible anti-cancer barrier that elicits growth arrest or cell death. Here we show that in clinical specimens from different stages of human tumours of the urinary bladder, breast, lung and colon, the early precursor lesions (but not normal tissues) commonly express markers of an activated DNA damage response. These include phosphorylated kinases ATM and Chk2, and phosphorylated histone H2AX and p53. Similar checkpoint responses were induced in cultured cells upon expression of different oncogenes that deregulate DNA replication. Together with genetic analyses, including a genome-wide assessment of allelic imbalances, our data indicate that early in tumorigenesis (before genomic instability and malignant conversion), human cells activate an ATR/ATM-regulated DNA damage response network that delays or prevents cancer. Mutations compromising this checkpoint, including defects in the ATM-Chk2-p53 pathway, might allow cell proliferation, survival, increased genomic instability and tumour progression.
Publication Types:
Research Support, Non-U.S. Gov't
PMID: 15829956 [PubMed - indexed for MEDLINE]
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