Long Noncoding RNA LINC00092 Acts in Cancer-Associated Fibroblasts to Drive Glycolysis and Progression of Ovarian Cancer

Linjie Zhao(Sichuan University), Gaili Ji(Sichuan University), Xiaobing Le(Sichuan University), Chenlu Wang(Sichuan University), Lian Xu(Sichuan University), Min Feng(Sichuan University), Yaguang Zhang(Sichuan University), Huiliang Yang(Sichuan University), Xuan Yu(Sichuan University), Yanfei Yang(Sichuan University), Lingzi Lei(Sichuan University), Qilian Yang(Sichuan University), Wayne Bond Lau(Thomas Jefferson University Hospital), Bonnie Lau(Kaiser Permanente Santa Clara Medical Center), Yi Chen(Sichuan University), Xiangbing Deng(Sichuan University), Shaohua Yao(Sichuan University), Tao Yi(Sichuan University), Xia Zhao(Sichuan University), Yuquan Wei(Sichuan University), Shengtao Zhou(Sichuan University)
Cancer Research
January 13, 2017
Cited by 233

Abstract

Abstract The majority of patients with epithelial ovarian cancer are diagnosed at a late stage when the peritoneal metastases exist; however, there is little knowledge of the metastatic process in this disease setting. In this study, we report the identification of the long noncoding RNA LINC00092 as a nodal driver of metastatic progression mediated by cancer-associated fibroblasts (CAF). Prometastatic properties of CAFs in vitro and in vivo were found to associate with elevated expression of the chemokine CXCL14. In clinical specimens, elevated levels of CXCL14 in CAFs also correlated with poor prognosis. Notably, CXCL14-high CAFs mediated upregulation of LINC00092 in ovarian cancer cells, the levels of which also correlated with poor prognosis in patients. Mechanistic studies showed that LINC00092 bound a glycolytic enzyme, the fructose-2,6-biphosphatase PFKFB2, thereby promoting metastasis by altering glycolysis and sustaining the local supportive function of CAFs. Overall, our study uncovered a positive feedback loop in the metabolism of CXCL14-positive CAFs and ovarian cancer cells that is critical for metastatic progression. Cancer Res; 77(6); 1369–82. ©2017 AACR.


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