首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Trp53 deletion stimulates the formation of metastatic pancreatic tumors.
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Trp53 deletion stimulates the formation of metastatic pancreatic tumors.

机译:Trp53缺失刺激转移性胰腺肿瘤的形成。

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摘要

The presence of distant metastases is a common finding on diagnosis of pancreatic cancer; however, the mechanisms underlying the dissemination of this tumor type remain poorly understood. Loss of the p53 tumor suppressor protein has been associated with tumor progression and metastasis in several tumor types including pancreatic ductal adenocarcinoma. Here, we describe the generation of a progressive and metastatic pancreatic cancer mouse model after the somatic and sporadic delivery of avian retroviruses encoding the mouse polyoma virus middle T antigen to elastase-tv-a transgenic mice with a pancreas-specific deletion of the Trp53 tumor suppressor locus. In this model, the tumors metastasize most frequently to the liver, consistent with human pancreatic carcinomas. Analysis of metastatic lesions demonstrated that concomitant loss of the Ink4a/Arf locus was not required for metastasis; however, pancreas-specific deletion of a single Ink4a/Arf allele cooperated with Trp53 deletion in a haploinsufficient manner to accelerate tumor development. Thus, our findings illustrate the potential role of p53 loss of function in pancreatic tumor progression, demonstrate the feasibility of modeling pancreatic cancer metastasis after somatic and sporadic oncogene activation, and indicate that our model may provide a useful experimental system for investigation of the molecular mechanisms underlying pancreatic cancer progression and metastasis.
机译:远处转移的存在是胰腺癌诊断的常见发现;然而,这种肿瘤类型播散的机制仍然知之甚少。p53 抑癌蛋白的缺失与多种肿瘤类型的肿瘤进展和转移有关,包括胰腺导管腺癌。在这里,我们描述了在编码小鼠多瘤病毒中间 T 抗原的禽逆转录病毒体细胞和散发性递送至弹性蛋白酶-tv-a 转基因小鼠后进行性和转移性胰腺癌小鼠模型的产生,胰腺特异性缺失 Trp53 肿瘤抑制基因座。在该模型中,肿瘤最常转移到肝脏,与人类胰腺癌一致。对转移性病变的分析表明,转移不需要同时丢失 Ink4a/Arf 位点;然而,单个 Ink4a/Arf 等位基因的胰腺特异性缺失与 Trp53 缺失以单倍体不足的方式合作加速肿瘤发展。因此,我们的研究结果说明了p53功能丧失在胰腺肿瘤进展中的潜在作用,证明了在体细胞和散发癌基因激活后模拟胰腺癌转移的可行性,并表明我们的模型可能为研究胰腺癌进展和转移的分子机制提供有用的实验系统。

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