Long noncoding RNA SOX2OT promotes pancreatic cancer cell migration and invasion through destabilizing FUS protein via ubiquitination

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作者
Yan Wang
Xiong-Fei Zhang
Dong-Yan Wang
Yi Zhu
Lei Chen
Jing-Jing Zhang
机构
[1] The First Affiliated Hospital of Nanjing Medical University,Endoscopy Center
[2] Nanjing University of Chinese Medicine,Department of Biochemistry
[3] Nanjing University of Chinese Medicine,Department of General Surgery, Affiliated Hospital of Integrated Traditional Chinese and Western Medicine
[4] The First Affiliated Hospital of Nanjing Medical University,Department of General Surgery
[5] The First Affiliated Hospital of Nanjing Medical University,Pancreas Center
[6] Pancreas Institute of Nanjing Medical University,undefined
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Pancreatic cancer is a highly aggressive and lethal digestive system malignancy. Our previous studies revealed the correlation of high levels of lncRNA SOX2OT expression with patients’ poor survival outcomes, the promoting role of SOX2OT in proliferation and cycle progression of pancreatic cancer cells, and the in vivo binding of SOX2OT to RNA binding protein FUS, which destabilized the protein expression of FUS. However, the mechanism of SOX2OT binding and inhibiting FUS protein stability remains unclear. In this study, we performed RNA pull-down, cycloheximide-chase, and ubiquitination assays to determine the effect of SOX2OT on FUS ubiquitination, and explored the specific regulatory mechanism of SOX2OT–FUS axis in pancreatic cancer cell migration, invasion, in vivo tumor growth, and metastasis through RNA sequencing. We found that SOX2OT binds to FUS through its 5′ and 3′ regions, resulting in FUS ubiquitination and degradation. The SOX2OT–FUS regulatory axis promotes migration, invasion, tumor growth, and metastasis ability of pancreatic cancer cells. The in-depth elaboration of the SOX2OT–FUS regulatory axis in pancreatic cancer may clarify the mechanism of action of SOX2OT and provide new ideas for pancreatic cancer treatment.
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