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基因扩增:机制及其在癌症中的作用

Gene amplification: mechanisms and involvement in cancer.

作者信息

Matsui Atsuka, Ihara Tatsuya, Suda Hiraku, Mikami Hirofumi, Semba Kentaro

出版信息

Biomol Concepts. 2013 Dec;4(6):567-82. doi: 10.1515/bmc-2013-0026.

Abstract

Gene amplification was recognized as a physiological process during the development of Drosophila melanogaster. Intriguingly, mammalian cells use this mechanism to overexpress particular genes for survival under stress, such as during exposure to cytotoxic drugs. One well-known example is the amplification of the dihydrofolate reductase gene observed in methotrexate-resistant cells. Four models have been proposed for the generation of amplifications: extrareplication and recombination, the breakage-fusion-bridge cycle, double rolling-circle replication, and replication fork stalling and template switching. Gene amplification is a typical genetic alteration in cancer, and historically many oncogenes have been identified in the amplified regions. In this regard, novel cancer-associated genes may remain to be identified in the amplified regions. Recent comprehensive approaches have further revealed that co-amplified genes also contribute to tumorigenesis in concert with known oncogenes in the same amplicons. Considering that cancer develops through the alteration of multiple genes, gene amplification is an effective acceleration machinery to promote tumorigenesis. Identification of cancer-associated genes could provide novel and effective therapeutic targets.

摘要

基因扩增在黑腹果蝇发育过程中被认为是一种生理过程。有趣的是,哺乳动物细胞利用这一机制在应激状态下(如暴露于细胞毒性药物时)过度表达特定基因以实现存活。一个广为人知的例子是在甲氨蝶呤耐药细胞中观察到的二氢叶酸还原酶基因的扩增。关于扩增的产生提出了四种模型:额外复制与重组、断裂-融合-桥循环、双滚环复制以及复制叉停滞与模板转换。基因扩增是癌症中一种典型的基因改变,历史上在扩增区域已鉴定出许多癌基因。在这方面,可能仍有新的癌症相关基因有待在扩增区域中被鉴定出来。最近的综合方法进一步揭示,共同扩增的基因也与同一扩增子中的已知癌基因协同促进肿瘤发生。鉴于癌症是通过多个基因的改变发展而来,基因扩增是促进肿瘤发生的一种有效的加速机制。鉴定癌症相关基因可为新型有效治疗靶点的提供依据。

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