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Research Paper

A novel fusion circular RNA F-circBA1 derived from the BCR-ABL fusion gene displayed an oncogenic role in chronic myeloid leukemia cells

, , , , & ORCID Icon
Pages 4816-4827 | Received 25 May 2021, Accepted 15 Jul 2021, Published online: 04 Aug 2021

References

  • Quintás-Cardama A, Cortes J. Molecular biology of bcr-abl1-positive chronic myeloid leukemia. Blood. 2009;113(8):1619–1630.
  • Lugo TG, Pendergast AM, Muller AJ, et al. Tyrosine kinase activity and transformation potency of bcr-abl oncogene products. Science. 1990;247(4946):1079–1082.
  • Steelman LS, Pohnert SC, Shelton JG, et al. JAK/STAT, Raf/MEK/ERK, PI3K/Akt and bcr-abl in cell cycle progression and leukemogenesis. Leukemia. 2004;18(2):189–218.
  • Bhaskar A, Raturi K, Dang S, et al. Current perspectives on the therapeutic aspects of chronic myelogenous leukemia. Expert Opin Ther Pat. 2014;24(10):1117–1127.
  • Memczak S, Jens M, Elefsinioti A, et al. Circular RNAs are a large class of animal RNAs with regulatory potency. Nature. 2013;495(7441):333–338.
  • Tang X, Ren H, Guo M, et al. Review on circular RNAs and new insights into their roles in cancer. Comp Struct Biotechnol J. 2021;19:910–928.
  • Ivanov A, Memczak S, Wyler E, et al. Analysis of intron sequences reveals hallmarks of circular RNA biogenesis in animals. Cell Rep. 2015;10(2):170–177.
  • Vo J, Cieslik M, Zhang Y, et al. The landscape of circular RNA in. Cancer Cell. 2019;176(4):869–881.e813.
  • Hansen TB, Jensen TI, Clausen BH, et al. Natural RNA circles function as efficient microRNA sponges. Nature. 2013;495(7441):384–388.
  • Guarnerio J, Bezzi M, Jeong J, et al. Oncogenic role of fusion-circRNAs derived from cancer-associated chromosomal translocations. Cell. 2016;165(2):289–302.
  • Tan S, Gou Q, Pu W, et al. Circular RNA F-circEA produced from EML4-ALK fusion gene as a novel liquid biopsy biomarker for non-small cell lung cancer. Cell Res. 2018;28(6):693–695.
  • Pan Y, Lou J, Wang H, et al. CircBA9.3 supports the survival of leukaemic cells by up-regulating c-ABL1 or BCR-ABL1 protein levels. Blood Cells Mol Dis. 2018;73:38–44.
  • Wang J, Ma HL, Liu WR, et al. CircBA1 derived from bcr-abl fusion gene inhibits cell proliferation in chronic myeloid leukemia. Cancer Commun (Lond). 2021;41(1):79–82.
  • Li H, Huang Z, Gao M, et al. Inhibition of YAP suppresses CML cell proliferation and enhances efficacy of imatinib in vitro and in vivo. J Exp Clin Cancer Res. 2016;35(1):134.
  • Zou Q, Tan S, Yang Z, et al. NPM1 mutant mediated PML delocalization and stabilization enhances autophagy and cell survival in leukemic cells. Theranostics. 2017;7(8):2289–2304.
  • Liu F, Fan Y, Ou L, et al. CircHIPK3 facilitates the G2/M transition in prostate cancer cells by sponging miR-338-3p. Onco Targets Ther. 2020;13:4545–4558.
  • Nemzek JA, Bolgos GL, Williams BA, et al. Differences in normal values for murine white blood cell counts and other hematological parameters based on sampling site. Inflamm Res. 2001;50(10):523–527.
  • Yu Y, Cao Y, Xia Y, et al. Wright-Giemsa staining to observe phagocytes in Locusta migratoria infected with Metarhizium acridum. J Invertebr Pathol. 2016;139:19–24.
  • Mathews DH, Disney MD, Childs JL, et al. Incorporating chemical modification constraints into a dynamic programming algorithm for prediction of RNA secondary structure. Proc Natl Acad Sci USA. 2004;101(19):7287–7292.
  • Chen Y, Yang F, Fang E, et al. Circular RNA circAGO2 drives cancer progression through facilitating HuR-repressed functions of AGO2-miRNA complexes. Cell Death Differ. 2019;26(7):1346–1364.
  • Sur S, Agrawal DK. Phosphatases and kinases regulating CDC25 activity in the cell cycle: clinical implications of CDC25 overexpression and potential treatment strategies. Mol Cell Biochem. 2016;416(1–2):33–46.
  • Li S, Peng F, Ning Y, et al. SNHG16 as the miRNA let-7b-5p sponge facilitates the G2/M and epithelial-mesenchymal transition by regulating CDC25B and HMGA2 expression in hepatocellular carcinoma. J Cell Biochem. 2020;121(3):2543–2558.
  • Huang W, Fang K, Chen TQ, et al. circRNA circAF4 functions as an oncogene to regulate MLL-AF4 fusion protein expression and inhibit MLL leukemia progression. J Hematol Oncol. 2019;12(1):103.
  • Han J, Li S, Feng Y, et al. A novel circular RNA (hsa_circ_0059930)-mediated miRNA-mRNA axis in the lipopolysaccharide-induced acute lung injury model of MRC-5 cells. Bioengineered. 2021;12(1):1739–1751.
  • Xie L, Pan Z. Circular RNA circ_0000467 regulates colorectal cancer development via miR-382-5p/EN2 axis. Bioengineered. 2021;12(1):886–897.
  • Yang C, Mou Z, Zhang Z, et al. Circular RNA RBPMS inhibits bladder cancer progression via miR-330-3p/RAI2 regulation. Mol Ther Nucleic Acids. 2021;23:872–886.
  • Tan S, Sun D, Pu W, et al. Circular RNA F-circEA-2a derived from EML4-ALK fusion gene promotes cell migration and invasion in non-small cell lung cancer. Mol Cancer. 2018;17(1):138.