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Deficiency of Pten accelerates mammary oncogenesis in MMTV-Wnt-1 transgenic mice

机译:Pten缺乏促进MMTV-Wnt-1转基因小鼠的乳腺肿瘤发生

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Background Germline mutations in the tumor suppressor PTEN predispose human beings to breast cancer, and genetic and epigenetic alterations of PTEN are also detected in sporadic human breast cancer. Germline Pten mutations in mice lead to the development of a variety of tumors, but mammary carcinomas are infrequently found, especially in mice under the age of six months. Results To better understand the role of PTEN in breast tumor development, we have crossed Pten heterozygous mice to MMTV-Wnt-1 transgenic mice that routinely develop ductal carcinomas in the mammary gland. Female Wnt-1 transgenics heterozygous for Pten developed mammary tumors earlier than Wnt-1 transgenics that were wild type for Pten. In most tumors arising in Pten heterozygotes, the Pten wild-type allele was lost, suggesting that cells lacking Pten function have a growth advantage over cells retaining a wild type allele. Tumors with LOH contained high levels of activated AKT/PKB, a downstream target of the PTEN/PI3K pathway. Conclusions An animal model has been developed in which the absence of Pten collaborates with Wnt-1 to induce ductal carcinoma in the mammary gland. This animal model may be useful for testing therapies specific for tumors deregulated in the PTEN/PI3K/AKT pathway.
机译:背景技术抑癌PTEN中的种系突变使人容易患乳腺癌,并且在散发性人乳腺癌中也检测到PTEN的遗传和表观遗传学改变。小鼠中的生殖系Pten突变会导致多种肿瘤的发生,但是很少发现乳腺癌,特别是在六个月以下的小鼠中。结果为了更好地了解PTEN在乳腺肿瘤发展中的作用,我们将Pten杂合小鼠与常规在乳腺中发展为导管癌的MMTV-Wnt-1转基因小鼠杂交。 Pten杂合的雌性Wnt-1转基因早于Pten的野生型Wnt-1转基因发展乳腺肿瘤。在大多数由Pten杂合子引起的肿瘤中,Pten野生型等位基因丢失了,这表明缺乏Pten功能的细胞比保留野生型等位基因的细胞具有生长优势。 LOH肿瘤含有高水平的活化AKT / PKB,这是PTEN / PI3K途径的下游靶标。结论已开发出一种动物模型,其中不存在Pten与Wnt-1协同诱导乳腺导管癌。该动物模型可用于测试针对PTEN / PI3K / AKT途径中失控的肿瘤的特异性疗法。

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