Catholic High-Performance Cell Therapy Center and Department of Medical Lifescience, The Catholic University of Korea, College of Medicine, Seoul, Korea.
Exp Mol Med. 2013 Sep 27;45(9):e44. doi: 10.1038/emm.2013.87.
With the increasing use of culture-expanded mesenchymal stromal cells (MSCs) for cell therapies, factors that regulate the cellular characteristics of MSCs have been of major interest. Oxygen concentration has been shown to influence the functions of MSCs, as well as other normal and malignant stem cells. However, the underlying mechanisms of hypoxic responses and the precise role of hypoxia-inducible factor-1α (Hif-1α), the master regulatory protein of hypoxia, in MSCs remain unclear, due to the limited span of Hif-1α stabilization and the complex network of hypoxic responses. In this study, to further define the significance of Hif-1α in MSC function during their self-renewal and terminal differentiation, we established adult bone marrow (BM)-derived MSCs that are able to sustain high level expression of ubiquitin-resistant Hif-1α during such long-term biological processes. Using this model, we show that the stabilization of Hif-1α proteins exerts a selective influence on colony-forming mesenchymal progenitors promoting their self-renewal and proliferation, without affecting the proliferation of the MSC mass population. Moreover, Hif-1α stabilization in MSCs led to the induction of pluripotent genes (oct-4 and klf-4) and the inhibition of their terminal differentiation into osteogenic and adipogenic lineages. These results provide insights into the previously unrecognized roles of Hif-1α proteins in maintaining the primitive state of primary MSCs and on the cellular heterogeneities in hypoxic responses among MSC populations.
随着用于细胞治疗的体外扩增间充质基质细胞(MSCs)的应用日益增多,调节 MSCs 细胞特征的因素已成为主要关注点。氧浓度已被证明会影响 MSCs 以及其他正常和恶性干细胞的功能。然而,由于 Hif-1α 稳定的时间跨度有限以及缺氧反应的复杂网络,缺氧反应的潜在机制以及缺氧诱导因子-1α(Hif-1α)在 MSCs 中的精确作用仍不清楚。Hif-1α,是缺氧的主要调节蛋白。在这项研究中,为了进一步确定 Hif-1α 在 MSC 自我更新和终末分化过程中的功能意义,我们建立了能够在长期生物学过程中维持高水平稳定的泛素抗性 Hif-1α 的成体骨髓(BM)来源 MSCs。使用该模型,我们表明 Hif-1α 蛋白的稳定对集落形成的间充质祖细胞具有选择性影响,促进其自我更新和增殖,而不影响 MSC 群体的增殖。此外,MSC 中的 Hif-1α 稳定导致多能基因(oct-4 和 klf-4)的诱导和其向成骨和成脂谱系的终末分化的抑制。这些结果深入了解了 Hif-1α 蛋白在维持原始状态的原发性 MSCs 以及在 MSC 群体中的缺氧反应中的细胞异质性方面的先前未知作用。