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近年来肿瘤抑制基因小鼠模型的研究进展及其对人类癌症的意义。

Recent progress in mouse models for tumor suppressor genes and its implications in human cancer.

机构信息

Department of Pathology, Wake Forest University Health Sciences, Medical Center Boulevard, Winston-Salem, NC 27157, USA. ; Department of Cancer Biology, Wake Forest University Health Sciences, Medical Center Boulevard, Winston-Salem, NC 27157, USA.

出版信息

Clin Med Insights Oncol. 2013 Jun 3;7:103-22. doi: 10.4137/CMO.S10358. Print 2013.

Abstract

Gain-of-function mutations in oncogenes and loss-of-function mutations in tumor suppressor genes (TSG) lead to cancer. In most human cancers, these mutations occur in somatic tissues. However, hereditary forms of cancer exist for which individuals are heterozygous for a germline mutation in a TSG locus at birth. The second allele is frequently inactivated by gene deletion, point mutation, or promoter methylation in classical TSGs that meet Knudson's two-hit hypothesis. Conversely, the second allele remains as wild-type, even in tumors in which the gene is haplo-insufficient for tumor suppression. This article highlights the importance of PTEN, APC, and other tumor suppressors for counteracting aberrant PI3K, β-catenin, and other oncogenic signaling pathways. We discuss the use of gene-engineered mouse models (GEMM) of human cancer focusing on Pten and Apc knockout mice that recapitulate key genetic events involved in initiation and progression of human neoplasia. Finally, the therapeutic potential of targeting these tumor suppressor and oncogene signaling networks is discussed.

摘要

致癌基因的功能获得性突变和肿瘤抑制基因(TSG)的功能丧失性突变导致癌症。在大多数人类癌症中,这些突变发生在体细胞组织中。然而,存在遗传性癌症形式,个体在出生时即为 TSG 基因座的种系突变杂合子。第二个等位基因经常通过基因缺失、点突变或经典 TSG 中的启动子甲基化失活,这些经典 TSG 符合 Knudson 的两次打击假说。相反,即使在该基因对肿瘤抑制作用不足的肿瘤中,第二个等位基因仍保持野生型。本文强调了 PTEN、APC 和其他肿瘤抑制因子在对抗异常 PI3K、β-连环蛋白和其他致癌信号通路方面的重要性。我们讨论了使用人类癌症的基因工程小鼠模型(GEMM),重点介绍了 Pten 和 Apc 敲除小鼠,这些小鼠重现了涉及人类肿瘤起始和进展的关键遗传事件。最后,讨论了针对这些肿瘤抑制因子和癌基因信号网络的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fad/3682694/2ac3a59321d4/cmo-7-2013-103f1.jpg

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