[HTML][HTML] FOXL2 suppresses proliferation, invasion and promotes apoptosis of cervical cancer cells

XL Liu, YH Meng, JL Wang, BB Yang… - … journal of clinical and …, 2014 - ncbi.nlm.nih.gov
XL Liu, YH Meng, JL Wang, BB Yang, F Zhang, SJ Tang
International journal of clinical and experimental pathology, 2014ncbi.nlm.nih.gov
FOXL2 is a transcription factor that is essential for ovarian function and maintenance, the
germline mutations of which give rise to the blepharophimosis ptosis epicanthus inversus
syndrome (BPES), often associated with premature ovarian failure. Recently, its mutations
have been found in ovarian granulosa cell tumors (OGCTs). In this study, we measured the
expression of FOXL2 in cervical cancer by immunohistochemistry and its mRNA level in
cervical cancer cell lines Hela and Siha by RT-PCR. Then we overexpressed FOXL2 in Hela …
Abstract
FOXL2 is a transcription factor that is essential for ovarian function and maintenance, the germline mutations of which give rise to the blepharophimosis ptosis epicanthus inversus syndrome (BPES), often associated with premature ovarian failure. Recently, its mutations have been found in ovarian granulosa cell tumors (OGCTs). In this study, we measured the expression of FOXL2 in cervical cancer by immunohistochemistry and its mRNA level in cervical cancer cell lines Hela and Siha by RT-PCR. Then we overexpressed FOXL2 in Hela cells and silenced it in Siha cells by plasmid transfection and verified using western blotting. When FOXL2 was overexpressed or silenced, cells proliferation and apoptosis were determined by Brdu assay and Annexin V/PI detection kit, respectively. In addition, we investigated the effects of FOXL2 on the adhesion and invasion of Hela and Siha cells. Finally, we analyzed the influences of FOXL2 on Ki67, PCNA and FasL by flow cytometry. The results showed that FOXL2 was highly expressed in cervical squamous cancer. Overexpressing FOXL2 suppressed Hela proliferation and facilitated its apoptosis. Silencing FOXL2 enhanced Siha proliferation and inhibited its apoptosis. Meanwhile, silencing FOXL2 promoted Siha invasion, but it had no effect on cells adhesion. In addition, overexpressing FOXL2 decreased the expression of Ki67 in Hela and Siha cells. Therefore, our results suggested that FOXL2 restrained cells proliferation and enhanced cells apoptosis mainly through decreasing Ki67 expression.
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