Dey Puja, Nakayama Kentaro, Razia Sultana, Ishikawa Masako, Ishibashi Tomoka, Yamashita Hitomi, Kanno Kosuke, Sato Seiya, Kiyono Tohru, Kyo Satoru
Department of Obstetrics and Gynecology, Shimane University Faculty of Medicine, Izumo 693-8501, Japan.
Project for Prevention of HPV-Related Cancer, National Cancer Center, Exploratory Oncology Research and Clinical Trial Center (EPOC), Kashiwa 277-8577, Japan.
Cancers (Basel). 2022 Mar 15;14(6):1506. doi: 10.3390/cancers14061506.
Despite the knowledge about numerous genetic mutations essential for the progression of low-grade serous ovarian carcinoma (LGSOC), the specific combination of mutations required remains unclear. Here, we aimed to recognize the oncogenic mutations responsible for the stepwise development of LGSOC using immortalized HOVs-cyst-1 cells, developed from ovarian serous cystadenoma cells, and immortalized via , , and gene transfection. Furthermore, oncogenic mutations, and , were individually and simultaneously introduced in immortalized HOV-cyst-1 cells. Cell functions were subsequently analyzed via in vitro assays. or double mutant HOV-cyst-1 cells exhibited higher cell proliferation and migration capacity than the wild-type cells, or those with either a or a mutation, indicating that these mutations play a causative role in LGSOC tumorigenesis. Moreover, and double mutants gained tumorigenic potential in nude mice, whereas the cells with a single mutant exhibited no signs of tumorigenicity. Furthermore, the transformation of HOV-cyst-1 cells with and mutants resulted in the development of tumors that were grossly and histologically similar to human LGSOCs. These findings suggest that simultaneous activation of the KRAS/ERK and PIK3CA/AKT signaling pathways is essential for LGSOC development.
尽管已知许多基因突变对低级别浆液性卵巢癌(LGSOC)的进展至关重要,但所需的特定突变组合仍不清楚。在此,我们旨在利用从卵巢浆液性囊腺瘤细胞衍生并通过 、 和 基因转染永生化的HOVs-cyst-1细胞,识别导致LGSOC逐步发展的致癌突变。此外,将致癌突变 、 和 分别及同时导入永生化的HOV-cyst-1细胞中。随后通过体外试验分析细胞功能。 或 双突变HOV-cyst-1细胞比野生型细胞,或携带 或 单突变的细胞表现出更高的细胞增殖和迁移能力,表明这些突变在LGSOC肿瘤发生中起因果作用。此外, 和 双突变体在裸鼠中获得了致瘤潜力,而单突变细胞未表现出致瘤迹象。此外,用 和 突变体转化HOV-cyst-1细胞导致肿瘤的发生,这些肿瘤在大体和组织学上与人类LGSOC相似。这些发现表明,KRAS/ERK和PIK3CA/AKT信号通路的同时激活对LGSOC的发展至关重要。