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Research Paper

CircRAB3IP upregulates twist family BHLH transcription factor (TWIST1) to promote osteosarcoma progression by sponging miR-580-3p

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Pages 3385-3397 | Received 19 May 2021, Accepted 22 Jun 2021, Published online: 05 Jul 2021

References

  • Yan GN, Y.F. Lv, Q.N. Guo. Advances in osteosarcoma stem cell research and opportunities for novel therapeutic targets. Cancer Lett 2016; 370: 268–274.
  • Zhang PF, C.Y. Wei, X.Y. Huang, et al. Circular RNA circTRIM33–12 acts as the sponge of MicroRNA-191 to suppress hepatocellular carcinoma progression. Mol Cancer 2019; 18(1):105.
  • Cui X, J. Wang, Z. Guo, et al. Emerging function and potential diagnostic value of circular RNAs in cancer. Mol Cancer 2018;17:123.
  • Zhao ZJ, J. Shen. Circular RNA participates in the carcinogenesis and the malignant behavior of cancer. RNA Biol 2017;14:514–521.
  • Li Z, X. Li, D. Xu, et al. An update on the roles of circular RNAs in osteosarcoma. Cell Prolif 2021;54:e12936.
  • Chen J, G. Liu, Y. Wu, et al. CircMYO10 promotes osteosarcoma progression by regulating miR-370-3p/RUVBL1 axis to enhance the transcriptional activity of β-catenin/LEF1 complex via effects on chromatin remodeling. Mol Cancer 2019; 18(1):150.
  • Verduci L, Ferraiuolo M, Sacconi A, et al. The oncogenic role of circPVT1 in head and neck squamous cell carcinoma is mediated through the mutant p53/YAP/TEAD transcription-competent complex. Genome Biol. 2017; 18, 237.
  • Zhang Z, F. Pu, B. Wang, et al. Hsa_circ_0000285 functions as a competitive endogenous RNA to promote osteosarcoma progression by sponging hsa-miRNA-599. Gene Ther. 2019 . 27 186–195
  • Tao X, Y. Shao, R. Lu, et al. Clinical significance of hsa circ 0000419 in gastric cancer screening and prognosis estimation. Pathol Res Pract 2020; 216(1):152763.
  • Zhu K, Ma X, Zhang L, et al. Screening circular RNA related to chemotherapeutic resistance in osteosarcoma by RNA. Epigenomics. 2018;10(10):1327–1346.
  • Vahabi M, Pulito C, Sacconi A, et al. miR-96-5p targets PTEN expression affecting radio-chemosensitivity of HNSCC cells. J Exp Clin Cancer Res. 2019; 38, 141.
  • Federica C, Giulia F, Matteo C, et al. Role of the long non-coding RNA PVT1 in the dysregulation of the ceRNA-ceRNA network in human breast cancer. PLoS One. 2017; 12(2):e0171661.
  • Francesco R, Giulia F, Federica C, et al. Interplay between long noncoding RNAs and MicroRNAs in cancer. Methods Mol Biol. 2018;1819:75–92.
  • Peng Q, Liu L, Pei H, et al. A LHFPL3-AS1/miR-580-3p/STAT3 feedback loop promotes the malignancy in melanoma via activation of JAK2/STAT3 signaling. Mol Cancer Res. 2020;18(11):1724–1734.
  • Ma W, Zhou Y, Liu M, et al. Long non-coding RNA LINC00470 in serum derived exosome: a critical regulator for proliferation and autophagy in glioma cells. Cancer Cell Int. 2021;21(1):149.
  • Wang S, Zhong L, Li Y, et al. Up-regulation of PCOLCE by TWIST1 promotes metastasis in Osteosarcoma. Theranostics. 2019; 9(15):4342–4353.
  • Zheng S, Z. Qian, F. Jiang, et al. CircRNA LRP6 promotes the development of osteosarcoma via negatively regulating KLF2 and APC levels. Am J Transl Res (2019) 11:4126–4138.
  • Qi H. Y. Sun, Y. Jiang, et al. Upregulation of circular RNA circ_0000502 predicts unfavorable prognosis in osteosarcoma and facilitates cell progression via sponging miR-1238. J Cell Biochem (2018) DOI: 10.1002/jcb.28134.
  • Shen S, T. Yao, Y. Xu, et al. CircECE1 activates energy metabolism in osteosarcoma by stabilizing c-Myc. Mol Cancer 2020; 19(1):151.
  • Ji F, R. Du, T. Chen, et al. Circular RNA circSLC26A4 accelerates cervical cancer progression via miR-1287-5p/HOXA7. Mol Ther Nucleic Acids 2020; 19:413–420.
  • Ji X, L. Shan, P. Shen, et al. Circular RNA circ_001621 promotes osteosarcoma cells proliferation and migration by sponging miR-578 and regulating VEGF expression. Cell Death Dis 2020;11(1):18.
  • Peng Q, L. Liu, H. Pei, et al. A LHFPL3-AS1/miR-580-3p/STAT3 feedback loop promotes the malignancy in melanoma via activation of JAK2/STAT3 signaling. Mol Cancer Res 2020; 18(11):1724–1734
  • Pang W, F. Huang, X. Zhang, et al. Circular RNA hsa_circ_0072309 inhibits non-small cell lung cancer progression by sponging miR-580-3p. Biosci Rep 2020; 40(5):BSR20194237.
  • Qin Q, Y Xu, T He, et al Normal and disease-related biological functions of Twist1 and underlying molecular mechanisms. Cell Res 2012; 22:90–106.
  • Y Xu, L. Qin, T. Sun, et al. Twist1 promotes breast cancer invasion and metastasis by silencing foxa1 expression. Oncogene 2017;36(8):1157–1166.
  • Wang S, L Zhong, Y Li, et al. Up-regulation of PCOLCE by TWIST1 promotes metastasis in Osteosarcoma. Theranostics 2019;9(15):4342–4353
  • Shi D, F Wu, S Mu, et al. LncRNA AFAP1-AS1 promotes tumorigenesis and epithelial-mesenchymal transition of osteosarcoma through RhoC/ROCK1/p38MAPK/Twist1 signaling pathway. J Exp Clin Cancer Res 2019; 38 (1):375.
  • Pan J, S Fang, H. Tian, et al. lncRNA JPX/miR-33a-5p/Twist1 axis regulates tumorigenesis and metastasis of lung cancer by activating Wnt/β-catenin signaling. Mol Cancer 2020;19 (1):9.
  • Cheng GZ, Zhang W, Wang L. Regulation of cancer cell survival, migration, and invasion by Twist: AKT2 comes to interplay. Cancer Res 2008; 68:957–960.
  • Yang MH, Hsu DS, Wang HW, et al. Bmi1 is essential in Twist1-induced epithelial-mesenchymal transition. Nat Cell Biol 2010; 12:982–992.
  • Shi J, Wang, Y, Zeng L, et al. Disrupting the interaction of BRD4 with diacetylated Twist suppresses tumorigenesis in basal-like breast cancer. Cancer Cell 2014; 25:210–225.