Title of article :
MAGI2-AS3 restrains proliferation, glycolysis, and triggers apoptosis in acute lymphoblastic leukemia via regulating miR-452-5p/FOXN3 pathway
Author/Authors :
Chen ، Xiao-Guang Department of Pediatrics - First Affiliated Hospital of Zhengzhou University , Dou ، Bing-Hua Department of Pediatrics - First Affiliated Hospital of Zhengzhou University , An ، Jin-Dou Department of Pediatrics - First Affiliated Hospital of Zhengzhou University , Feng ، Song Department of Pediatrics - First Affiliated Hospital of Zhengzhou University , Liu ، Na Department of Pediatrics - First Affiliated Hospital of Zhengzhou University , Sheng ، Guang-Yao Department of Pediatrics - First Affiliated Hospital of Zhengzhou University
From page :
46
To page :
52
Abstract :
Objective(s): MAGI2-AS3 is a cancer suppressor gene of multiple malignancies. Acute lymphoblastic leukemia (ALL) is an important type of leukemia that especially occurs in children. Our work evaluated the modulation of MAGI2-AS3 in ALL.Materials and Methods: qPCR and Western blotting were adopted for detection of target molecular expression. Growth and apoptosis were determined by CCK8 assay and Annexin V/PI staining. Glycolysis was detected by commercial kits. The direct binding between miR-452-5p and MAGI2-AS3 or FOXN3 was assessed by luciferase reporter assay. Tumor growth was measured in nude mice in vivo.Results: MAGI2-AS3 was down-regulated in ALL. Enforced expression of MAGI2-AS3 inhibited growth and glycolysis while promoting apoptosis of ALL cells. Moreover, MAGI2-AS3 up-regulated FOXN3 via sponging miR-452-5p. FOXN3 depletion abrogated MAGI2-AS3-mediated anti-cancer action. More importantly, MAGI2-AS3 repressed ALL cell growth in nude mice through regulation of miR-452-5p/FOXN3. Conclusion: MAGI2-AS3 inhibits ALL development via modulating miR-452-5p/FOXN3.
Keywords :
ALL , Apoptosis , FOXN3 , Glycolysis , Growth , MAGI2 , AS3 , miR , 452 , 5p
Journal title :
Iranian Journal of Basic Medical Sciences
Journal title :
Iranian Journal of Basic Medical Sciences
Record number :
2745489
Link To Document :
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