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人类癌症风险的分子流行病学:基因与环境的相互作用及人类肺癌中的p53突变谱

Molecular epidemiology of human cancer risk: gene-environment interactions and p53 mutation spectrum in human lung cancer.

作者信息

Bennett W P, Hussain S P, Vahakangas K H, Khan M A, Shields P G, Harris C C

机构信息

Division of Human Genetics, City of Hope, National Medical Center, Duarte, CA, USA.

出版信息

J Pathol. 1999 Jan;187(1):8-18. doi: 10.1002/(SICI)1096-9896(199901)187:1<8::AID-PATH232>3.0.CO;2-Y.

Abstract

The p53 tumour suppressor gene is at the crossroads of a network of cellular pathways including cell cycle checkpoints, DNA repair, chromosomal segregation, and apoptosis. These pathways have evolved to maintain the stability of the genome during cellular stress from DNA damage, hypoxia, and activated oncogenes. The high frequency of p53 mutations in human cancer is a reflection of the importance of p53 involvement in this network of pathways during human carcinogenesis. An electronic database containing p53 mutations from more than 9000 cancers (http:/(/)www.iarc.fr/p53/homepage.html) can be used to generate hypotheses for further clinical, epidemiological, and laboratory investigations. For example, one can hypothesize that (a) p53 mutations vary in their pathobiological significance; (b) cellular content influences the selection of p53 mutations in clonally derived cancers; (c) the location and type of mutation within the p53 gene provide clues to functional domains in the gene product; and (d) the p53 mutation spectrum can be a molecular link between aetiological agents and human cancer. This review will focus on the role of p53 and cancer susceptibility genes in the molecular pathogenesis and epidemiology of human lung cancer.

摘要

p53肿瘤抑制基因处于包括细胞周期检查点、DNA修复、染色体分离和细胞凋亡在内的细胞通路网络的交汇点。这些通路在细胞因DNA损伤、缺氧和激活的癌基因而受到应激时,进化以维持基因组的稳定性。p53突变在人类癌症中的高频率反映了p53在人类致癌过程中参与这一通路网络的重要性。一个包含来自9000多种癌症的p53突变的电子数据库(http:/(/)www.iarc.fr/p53/homepage.html)可用于生成进一步临床、流行病学和实验室研究的假设。例如,可以假设:(a)p53突变在其病理生物学意义上有所不同;(b)细胞含量影响克隆性起源癌症中p53突变的选择;(c)p53基因内突变的位置和类型为基因产物中的功能域提供线索;以及(d)p53突变谱可能是病因与人类癌症之间的分子联系。本综述将聚焦于p53和癌症易感基因在人类肺癌分子发病机制和流行病学中的作用。

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