4.8 Article

Conditional loss of uterine Pten unfailingly and rapidly induces endometrial cancer in mice

期刊

CANCER RESEARCH
卷 68, 期 14, 页码 5619-5627

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/0008-5472.CAN-08-1274

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  1. NCI NIH HHS [P01 CA077839-060008, P01-CA-77839, U54 CA091405, U01 CA105352-01/05, P01 CA077839, U01 CA105352, P30 CA068485, P30CA068485, P01 CA077839-100008, U54CA091405-06] Funding Source: Medline
  2. NICHD NIH HHS [R37 HD012304, R37 HD012304-23, R37 HD012304-29, R37 HD012304-30, R37 HD012304-19, T32 HD007043, HD12304] Funding Source: Medline
  3. PHS HHS [2THD007043] Funding Source: Medline

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Etiology of endometrial cancer (EMC) is not fully understood. Animal models with rapidly and spontaneously developing EMC will help explore mechanisms of cancer initiation and progression. Pten(+/-) mice are currently being used as a model to study EMC. These females develop atypical endometrial hyperplasia of which similar to 20% progresses to EMC. In addition, tumors develop in other organs, complicating the use of this model to specifically study EMC. Here, we show that conditional deletion of endometrial Pten results in EMC in all female mice as early as age 1 month with myometrial invasion occurring by 3 months. In contrast, conditional deletion of endometrial p53 had no phenotype within this time frame. Whereas mice with endometrial Pten deletion had a life span of similar to 5 months, mice with combined deletion of endometrial Pten and p53 had a shorter life span with an exacerbated disease state. Such rapid development of EMC from homozygous loss of endometrial Pten suggests that this organ is very sensitive to this tumor suppressor gene for tumor development. All lesions at early stages exhibited elevated Cox-2 and phospho-Akt levels, hallmarks of solid tumors. More interestingly, levels of two microRNAs miR-199a* and miR-101a that posttranscriptionally inhibit Cox-2 expression were down-regulated in tumors in parallel with Cox-2 up-regulation. This mouse model in which the loxP-Cre system has been used to delete endometrial Pten and/or p53 allows us to study in detail the initiation and progression of EMC. These mouse models have the added advantage because they mimic several features of human EMC.

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