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热休克转录因子HSF1在三维球体生长模型中诱导卵巢癌上皮-间质转化

The Heat Shock Transcription Factor HSF1 Induces Ovarian Cancer Epithelial-Mesenchymal Transition in a 3D Spheroid Growth Model.

作者信息

Powell Chase D, Paullin Trillitye R, Aoisa Candice, Menzie Christopher J, Ubaldini Ashley, Westerheide Sandy D

机构信息

Department of Cell Biology, Microbiology, and Molecular Biology, College of Arts and Sciences, University of South Florida, Tampa, Florida, United States of America.

出版信息

PLoS One. 2016 Dec 20;11(12):e0168389. doi: 10.1371/journal.pone.0168389. eCollection 2016.

Abstract

Ovarian cancer is the most lethal gynecological cancer, with over 200,000 women diagnosed each year and over half of those cases leading to death. The proteotoxic stress-responsive transcription factor HSF1 is frequently overexpressed in a variety of cancers and is vital to cellular proliferation and invasion in some cancers. Upon analysis of various patient data sets, we find that HSF1 is frequently overexpressed in ovarian tumor samples. In order to determine the role of HSF1 in ovarian cancer, inducible HSF1 knockdown cell lines were created. Knockdown of HSF1 in SKOV3 and HEY ovarian cancer cell lines attenuates the epithelial-to-mesenchymal transition (EMT) in cells treated with TGFβ, as determined by western blot and quantitative RT-PCR analysis of multiple EMT markers. To further explore the role of HSF1 in ovarian cancer EMT, we cultured multicellular spheroids in a non-adherent environment to simulate early avascular tumors. In the spheroid model, cells more readily undergo EMT; however, EMT inhibition by HSF1 becomes more pronounced in the spheroid model. These findings suggest that HSF1 is important in the ovarian cancer TGFβ response and in EMT.

摘要

卵巢癌是最致命的妇科癌症,每年有超过20万名女性被诊断出患有该病,其中超过一半的病例会导致死亡。蛋白质毒性应激反应转录因子HSF1在多种癌症中经常过度表达,并且在某些癌症中对细胞增殖和侵袭至关重要。在分析各种患者数据集后,我们发现HSF1在卵巢肿瘤样本中经常过度表达。为了确定HSF1在卵巢癌中的作用,我们创建了可诱导的HSF1敲低细胞系。通过对多种EMT标志物进行蛋白质印迹和定量RT-PCR分析确定,在SKOV3和HEY卵巢癌细胞系中敲低HSF1可减弱用TGFβ处理的细胞中的上皮-间质转化(EMT)。为了进一步探索HSF1在卵巢癌EMT中的作用,我们在非贴壁环境中培养多细胞球体以模拟早期无血管肿瘤。在球体模型中,细胞更容易发生EMT;然而,在球体模型中HSF1对EMT的抑制作用变得更加明显。这些发现表明,HSF1在卵巢癌TGFβ反应和EMT中很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fa7/5172610/be9e307e1b24/pone.0168389.g001.jpg

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