4.3 Article

lncRNA H19 mediates BMP9-induced osteogenic differentiation of mesenchymal stem cells (MSCs) through Notch signaling

期刊

ONCOTARGET
卷 8, 期 32, 页码 53581-53601

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.18655

关键词

mesenchymal stem cells; BMP9; osteogenic differentiation; lncRNA H19; Notch signaling

资金

  1. National Institutes of Health [AT004418, DE020140]
  2. US Department of Defense [OR130096]
  3. Scoliosis Research Society
  4. 973 Program of the Ministry of Science and Technology (MOST) of China [2011CB707906]
  5. National Natural Science Foundation of China [81371972, 81572142]
  6. Science and Technology Research Project of Chongqing Municipal Education Commission of China [KJ1500217]
  7. Chongqing Science and Technology Commission [cstc2013jjB10021]
  8. China Scholarship Council
  9. Graduate Research and Innovation Project from Chongqing Education Commission
  10. Outstanding Predoctorate Research Fellowship from Chongqing Medical University [CYB15098]
  11. University of Chicago Cancer Center Support Grant [P30CA014599]
  12. National Center for Advancing Translational Sciences of the National Institutes of Health [UL1 TR000430]

向作者/读者索取更多资源

Mesenchymal stem cells (MSCs) are multipotent progenitor cells that can undergo self-renewal and differentiate into multiple lineages. Osteogenic differentiation from MSCs is a well-orchestrated process and regulated by multiple signaling pathways. We previously demonstrated that BMP9 is one of the most potent osteogenic factors. However, molecular mechanism through which BMP9 governs osteoblastic differentiation remains to be fully understood. Increasing evidence indicates noncoding RNAs (ncRNAs) may play important regulatory roles in many physiological and/or pathologic processes. In this study, we investigate the role of lncRNA H19 in BMP9-regulated osteogenic differentiation of MSCs. We demonstrated that H19 was sharply upregulated at the early stage of BMP9 stimulation of MSCs, followed by a rapid decease and gradual return to basal level. This process was correlated with BMP9-induced expression of osteogenic markers. Interestingly, either constitutive H19 expression or silencing H19 expression in MSCs significantly impaired BMP9-induced osteogenic differentiation in vitro and in vivo, which was effectively rescued by the activation of Notch signaling. Either constitutive H19 expression or silencing H19 expression led to the increased expression of a group of miRNAs that are predicted to target Notch ligands and receptors. Thus, these results indicate that lncRNA H19 functions as an important mediator of BMP9 signaling by modulating Notch signaling-targeting miRNAs. Our findings suggest that the well-coordinated biphasic expression of lncRNA H19 may be essential in BMP9-induced osteogenic differentiation of MSCs, and that dysregulated H19 expression may impair normal osteogenesis, leading to pathogenic processes, such as bone tumor development.

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