Correlation Engine 2.0
Clear Search sequence regions


  • antigens cd (2)
  • c fes (2)
  • calcitriol (2)
  • CD11c (2)
  • CD18 (2)
  • CD64 (2)
  • cell (7)
  • cell cycle (2)
  • factor (2)
  • Fes (5)
  • FES protein (1)
  • humans (2)
  • kinds (1)
  • leukemia (2)
  • leukemia myeloid (1)
  • macrophage (2)
  • microrna (14)
  • mirn125 microrna, human (1)
  • monocytes (1)
  • mrna (2)
  • phase (1)
  • protein human (1)
  • proteins c- fes (2)
  • PU 1 (2)
  • receptor (2)
  • regions (2)
  • sirna (2)
  • Sizes of these terms reflect their relevance to your search.

    MicroRNA-125b (miR-125b) has been reported to be upregulated in several kinds of leukemia, suggesting that miR-125b plays a role in Leukemia development. In this study, it was shown that miR-125b expression level decreased in response to 1α, 25-dihydroxy-vitamin D3 (1,25D3) in a dose- and time-dependent manner and miR-125b blocked 1,25D3-induced monocytic differentiation of U937 cells. In addition, miR-125b decreased mRNA expression of myelomonocytic differentiation markers, including CD11c, CD18 and CD64 and arrested the cell cycle at the S phase in U937 and HL60 cells. Fes was identified as a novel direct target of miR-125b and miR-125b could also reduce the expression levels of PU.1 and macrophage colony-stimulating factor receptor (MCSFR). Furthermore, Fes was found to be involved in monocytic differentiation via upregulation of PU.1 and MCSFR and Fes siRNA could also inhibit 1,25D3-induced monocytic differentiation of U937 and HL60 cells and decrease mRNA expression of CD11c, CD18 and CD64. Importantly, the inhibition of Fes siRNA on 1,25D3-induced monocytic differentiation could be rescued by transfection with miR-125b inhibitor. Our data highlights an important role of miR-125b in AML progression, implying the potential application of miR-125b in AML therapy. Copyright © 2017 Elsevier B.V. All rights reserved.

    Citation

    Jinhang Hu, Lufeng Zheng, Xiao Shen, Yan Zhang, Cheng Li, Tao Xi. MicroRNA-125b inhibits AML cells differentiation by directly targeting Fes. Gene. 2017 Jul 15;620:1-9

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 28389358

    View Full Text