Cancer Science Institute, National University of Singapore, 14 Medical Drive, MD6, 117599 Singapore, Singapore; International Research Center for Medical Sciences, Kumamoto University, 2-2-1 Honjo, Chuo-ku, Kumamoto City 860-0811, Japan.
Cancer Science Institute, National University of Singapore, 14 Medical Drive, MD6, 117599 Singapore, Singapore.
Cell Rep. 2018 Nov 13;25(7):1772-1785.e6. doi: 10.1016/j.celrep.2018.10.059.
During acute myelosuppression or thrombocytopenia, bone marrow (BM) hematopoietic cells respond rapidly to replenish peripheral blood platelets. While the cytokine thrombopoietin (Thpo) both regulates platelet production and maintains HSC potential, whether Thpo controls megakaryocyte (Mk)-lineage differentiation of HSCs is unclear. Here, we show that Thpo rapidly upregulates mitochondrial activity in HSCs, an activity accompanied by differentiation to an Mk lineage. Moreover, in unperturbed hematopoiesis, HSCs with high mitochondrial activity exhibit Mk-lineage differentiation in vitro and myeloid lineage-biased reconstitution in vivo. Furthermore, Thpo skewed HSCs to express the tetraspanin CD9, a pattern correlated with mitochondrial activity. Mitochondria-active HSCs are resistant to apoptosis and oxidative stress upon Thpo stimulation. Thpo-regulated mitochondrial activity associated with mitochondrial translocation of STAT3 phosphorylated at serine 727. Overall, we report an important role for Thpo in regulating rapid Mk-lineage commitment. Thpo-dependent changes in mitochondrial metabolism prime HSCs to undergo direct differentiation to an Mk lineage.
在急性骨髓抑制或血小板减少症期间,骨髓(BM)造血细胞会迅速响应以补充外周血血小板。虽然细胞因子血小板生成素(Thpo)既能调节血小板的生成,又能维持 HSC 的潜能,但 Thpo 是否控制 HSCs 向巨核细胞(Mk)谱系分化尚不清楚。在这里,我们发现 Thpo 可快速上调 HSCs 中的线粒体活性,这种活性伴随着向 Mk 谱系的分化。此外,在未受干扰的造血中,具有高线粒体活性的 HSCs 在体外表现出 Mk 谱系分化,并且在体内偏向骨髓谱系重建。此外,Thpo 将 HSCs 偏向表达四跨膜蛋白 CD9,这种模式与线粒体活性相关。线粒体活性的 HSCs 在 Thpo 刺激下对凋亡和氧化应激具有抗性。Thpo 调节的线粒体活性与 STAT3 丝氨酸 727 磷酸化的线粒体易位相关。总的来说,我们报告了 Thpo 在调节快速 Mk 谱系定向中的重要作用。Thpo 依赖性线粒体代谢变化使 HSCs 能够直接向 Mk 谱系分化。