Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago, Chicago, IL, USA.
Department of Pathology, Reference Histology Laboratory,, J. Hopkins Medical Institution, Baltimore, MD, USA.
Oncogene. 2018 Apr;37(15):1976-1990. doi: 10.1038/s41388-017-0097-8. Epub 2018 Jan 25.
The signaling events involved in the onset of ovarian cancer from the fallopian tube epithelium (FTE) are crucial for early detection and treatment of the disease, but they remain poorly defined. Conditional homozygous knockout of PTEN mediated by PAX8-cre recombinase was sufficient to drive endometrioid and serous borderline ovarian carcinoma, providing the first model of FTE-derived borderline tumors. In addition, heterozygous PTEN deletion in the FTE resulted in hyperplasia, providing a model to study early events of human ovarian pathogenesis. To uncover the mechanism underlying the invasion of cancerous oviductal cells to the ovary, PTEN-deficient murine oviductal cells were developed and tagged with green fluorescent protein. Loss of PTEN increased cell migration, invasion, and upregulated WNT4, a key regulator of Müllerian duct development during embryogenesis. Further investigation revealed that WNT4 was required for increased migration and colonization of the ovary by PTEN-deficient oviductal cells in a β-catenin independent manner. Human tumor microarrays and ovarian cancer cells lines confirmed WNT4 expression in cancer and its role in migration. Together, these findings provide a novel model to study the mechanism of fallopian tube tumor initiation and invasion to the ovary mediated by loss of PTEN, which may help to define early events of human ovarian carcinogenesis.
从输卵管上皮(FTE)起始的卵巢癌相关信号事件对疾病的早期检测和治疗至关重要,但目前仍知之甚少。PAX8-cre 重组酶介导的 PTEN 条件性纯合缺失足以驱动子宫内膜样和浆液性交界性卵巢癌,为 FTE 来源的交界性肿瘤提供了首个模型。此外,FTE 中的杂合性 PTEN 缺失导致增生,为研究人类卵巢发病机制的早期事件提供了模型。为了揭示癌细胞侵袭卵管至卵巢的机制,开发了携带绿色荧光蛋白的 PTEN 缺陷型鼠卵管细胞并进行了标记。PTEN 的缺失增加了细胞迁移、侵袭,并上调了 WNT4,这是胚胎发生中 Müllerian 管发育的关键调节剂。进一步的研究表明,WNT4 对于 PTEN 缺陷型卵管细胞通过β-catenin 非依赖性途径向卵巢的迁移和定植是必需的。人肿瘤微阵列和卵巢癌细胞系证实了 WNT4 在肿瘤中的表达及其在迁移中的作用。总之,这些发现提供了一个新的模型来研究由 PTEN 缺失介导的输卵管肿瘤起始和侵袭卵巢的机制,这可能有助于定义人类卵巢癌发生的早期事件。