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一种具有 Pten 和 p53 缺失的异质性、c-MYC 起始的前列腺癌的小鼠模型。

A mouse model of heterogeneous, c-MYC-initiated prostate cancer with loss of Pten and p53.

机构信息

Department of Pathology, Vanderbilt University Medical Center, Nashville, TN 37232, USA.

出版信息

Oncogene. 2012 Jan 19;31(3):322-32. doi: 10.1038/onc.2011.236. Epub 2011 Jun 20.

Abstract

Human tumors are heterogeneous and evolve through a dynamic process of genetic mutation and selection. During this process, the effects of a specific mutation on the incipient cancer cell may dictate the nature of subsequent mutations that can be tolerated or selected for, affecting the rate at which subsequent mutations occur. Here we have used a new mouse model of prostate cancer that recapitulates several salient features of the human disease to examine the relative rates in which the remaining wild-type alleles of Pten and p53 tumor suppressor genes are lost. In this model, focal overexpression of c-MYC in a few prostate luminal epithelial cells provokes a mild proliferative response. In the context of compound Pten/p53 heterozygosity, c-MYC-initiated cells progress to prostatic intraepithelial neoplasia (mPIN) and adenocarcinoma lesions with marked heterogeneity within the same prostate glands. Using laser capture microdissection and gene copy number analyses, we found that the frequency of Pten loss was significantly higher than that of p53 loss in mPIN but not invasive carcinoma lesions. c-MYC overexpression, unlike Pten loss, did not activate the p53 pathway in transgenic mouse prostate cells, explaining the lack of selective pressure to lose p53 in the c-MYC-overexpressing cells. This model of heterogeneous prostate cancer based on alterations in genes relevant to the human disease may be useful for understanding pathogenesis of the disease and testing new therapeutic agents.

摘要

人类肿瘤是异质的,并通过遗传突变和选择的动态过程进化。在这个过程中,特定突变对初始癌细胞的影响可能决定了随后可以耐受或选择的突变的性质,从而影响随后突变发生的速度。在这里,我们使用了一种新的前列腺癌小鼠模型,该模型再现了人类疾病的几个显著特征,以检查 Pten 和 p53 肿瘤抑制基因的剩余野生型等位基因丢失的相对速度。在这种模型中,少数前列腺腔上皮细胞中 c-MYC 的局灶性过表达会引起轻微的增殖反应。在 Pten/p53 杂合性的情况下,c-MYC 引发的细胞进展为前列腺上皮内瘤变(mPIN)和腺癌病变,同一前列腺腺体中存在明显的异质性。通过激光捕获显微切割和基因拷贝数分析,我们发现 mPIN 中 Pten 缺失的频率明显高于 p53 缺失的频率,但在浸润性癌病变中则不然。与 Pten 缺失不同,c-MYC 过表达不会激活转基因小鼠前列腺细胞中的 p53 途径,这解释了在 c-MYC 过表达细胞中缺乏选择压力以丢失 p53 的原因。这种基于与人类疾病相关基因改变的异质性前列腺癌模型可能有助于理解疾病的发病机制并测试新的治疗药物。

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