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通过遗传筛选工具绕过细胞衰老。

Bypassing cellular senescence by genetic screening tools.

机构信息

Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío, Sevilla, Spain.

出版信息

Clin Transl Oncol. 2010 Jun;12(6):410-7. doi: 10.1007/s12094-010-0528-2.

Abstract

Bypassing cellular senescence is a prerequisite step in the tumorigenic transformation. It has long been known that loss of a key tumour suppressor gene, such as p53 or pRB, is necessary but not sufficient for spontaneous cellular immortalisation. Therefore, there must be additional mutations and/or epigenetic alterations required for immortalisation to occur. Early work on these processes included somatic-cell genetic studies to estimate the number of senescence genes and nowadays are completed by in vivo models and with the requirements to bypass senescence induced by oncogenic transformation in stem cells. These principal studies laid the foundation for the field of senescence/immortalisation but were labour intensive and the results were somewhat limited. Using retroviral-based functional genetic screening, we and others identified universal genes regulating senescence/immortalisation (either by gain or loss of function) and found that some of these genes are widely altered in human tumours. We also explored the molecular mechanisms throughout these genes that regulate senescence and established the causality of the genetic alteration in tumorigenesis. The identification of genes and pathways regulating senescence/immortalisation could provide novel molecular targets for the treatment and/or prevention of cancer.

摘要

绕过细胞衰老(衰老)是肿瘤形成转化的先决条件步骤。长期以来,人们已经知道,关键肿瘤抑制基因(如 p53 或 pRB)的缺失对于自发性细胞永生化是必要的,但不是充分的。因此,必然存在额外的突变和/或表观遗传改变,以实现永生化。这些过程的早期工作包括体细胞遗传研究,以估计衰老基因的数量,如今已通过体内模型以及绕过致癌转化诱导衰老的要求来完成。这些主要研究为衰老/永生化领域奠定了基础,但劳动强度大,结果有些局限。我们和其他人使用基于逆转录病毒的功能遗传筛选,鉴定了调节衰老/永生化的通用基因(通过功能获得或缺失),并发现其中一些基因在人类肿瘤中广泛改变。我们还探索了这些基因调节衰老的分子机制,并确定了遗传改变在肿瘤发生中的因果关系。鉴定调节衰老/永生化的基因和途径可以为癌症的治疗和/或预防提供新的分子靶点。

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