Long noncoding RNATUG1 promotes cisplatin resistance in ovarian cancer via upregulation of DNA polymerase eta

Author:

Sonobe Ryosuke1ORCID,Yang Peng123,Suzuki Miho M.1ORCID,Shinjo Keiko1ORCID,Iijima Kenta1ORCID,Nishiyama Nobuhiro45ORCID,Miyata Kanjiro6ORCID,Kataoka Kazunori5ORCID,Kajiyama Hiroaki2ORCID,Kondo Yutaka178ORCID

Affiliation:

1. Division of Cancer Biology Nagoya University Graduate School of Medicine Nagoya Aichi Japan

2. Department of Obstetrics and Gynecology Nagoya University Graduate School of Medicine Nagoya Aichi Japan

3. Fourth Department of Gynecologic Oncology Hunan Cancer Hospital/The Affiliated Cancer Hospital of Xiangya School of Medicine, Central South University Changsha Hunan China

4. Department of Life Science and Technology, School of Life Science and Technology Tokyo Institute of Technology Yokohama Kanagawa Japan

5. Innovation Center of Nanomedicine (iCONM) Kawasaki Institute of Industrial Promotion Kawasaki Kanagawa Japan

6. Department of Materials Engineering, Graduate School of Engineering The University of Tokyo Tokyo Japan

7. Institute for Glyco‐core Research (iGCORE), Nagoya University Nagoya Aichi Japan

8. Center for One Medicine Innovative Translational Research (COMIT) Nagoya University Nagoya Aichi Japan

Abstract

AbstractChemoresistance is a major cause of high mortality and poor survival in patients with ovarian cancer (OVCA). Understanding the mechanisms of chemoresistance is urgently required to develop effective therapeutic approaches to OVCA. Here, we show that expression of the long noncoding RNA, taurine upregulated gene 1 (TUG1), is markedly upregulated in samples from OVCA patients who developed resistance to primary platinum‐based therapy. Depletion of TUG1 increased sensitivity to cisplatin in the OVCA cell lines, SKOV3 and KURAMOCHI. Combination therapy of cisplatin with antisense oligonucleotides targeting TUG1 coupled with a drug delivery system effectively relieved the tumor burden in xenograft mouse models. Mechanistically, TUG1 acts as a competing endogenous RNA by downregulating miR‐4687‐3p and miR‐6088, both of which target DNA polymerase eta (POLH), an enzyme required for translesion DNA synthesis. Overexpression of POLH reversed the effect of TUG1 depletion on cisplatin‐induced cytotoxicity. Our data suggest that TUG1 upregulation allows OVCA to tolerate DNA damage via upregulation of POLH; this provides a strong rationale for targeting TUG1 to overcome cisplatin resistance in OVCA.

Funder

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Publisher

Wiley

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