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人类癌前病变中DNA损伤检查点的激活与基因组不稳定

Activation of the DNA damage checkpoint and genomic instability in human precancerous lesions.

作者信息

Gorgoulis Vassilis G, Vassiliou Leandros-Vassilios F, Karakaidos Panagiotis, Zacharatos Panayotis, Kotsinas Athanassios, Liloglou Triantafillos, Venere Monica, Ditullio Richard A, Kastrinakis Nikolaos G, Levy Brynn, Kletsas Dimitris, Yoneta Akihiro, Herlyn Meenhard, Kittas Christos, Halazonetis Thanos D

机构信息

Department of Histology and Embryology, School of Medicine, University of Athens, Athens GR-11527, Greece.

出版信息

Nature. 2005 Apr 14;434(7035):907-13. doi: 10.1038/nature03485.

Abstract

DNA damage checkpoint genes, such as p53, are frequently mutated in human cancer, but the selective pressure for their inactivation remains elusive. We analysed a panel of human lung hyperplasias, all of which retained wild-type p53 genes and had no signs of gross chromosomal instability, and found signs of a DNA damage response, including histone H2AX and Chk2 phosphorylation, p53 accumulation, focal staining of p53 binding protein 1 (53BP1) and apoptosis. Progression to carcinoma was associated with p53 or 53BP1 inactivation and decreased apoptosis. A DNA damage response was also observed in dysplastic nevi and in human skin xenografts, in which hyperplasia was induced by overexpression of growth factors. Both lung and experimentally-induced skin hyperplasias showed allelic imbalance at loci that are prone to DNA double-strand break formation when DNA replication is compromised (common fragile sites). We propose that, from its earliest stages, cancer development is associated with DNA replication stress, which leads to DNA double-strand breaks, genomic instability and selective pressure for p53 mutations.

摘要

DNA损伤检查点基因,如p53,在人类癌症中经常发生突变,但其失活的选择压力仍然难以捉摸。我们分析了一组人类肺增生组织,所有这些组织都保留了野生型p53基因,且没有明显的染色体不稳定迹象,并发现了DNA损伤反应的迹象,包括组蛋白H2AX和Chk2磷酸化、p53积累、p53结合蛋白1(53BP1)的灶状染色以及细胞凋亡。进展为癌与p53或53BP1失活以及细胞凋亡减少有关。在发育异常痣和人皮肤异种移植中也观察到了DNA损伤反应,其中增生是由生长因子的过表达诱导的。肺和实验诱导的皮肤增生在DNA复制受损时易于形成DNA双链断裂的位点(常见脆性位点)均显示出等位基因不平衡。我们提出,从癌症发展的最早阶段起,就与DNA复制应激相关,这会导致DNA双链断裂、基因组不稳定以及对p53突变的选择压力。

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