a Institue for Brain Research and Rehabilitation , South China Normal University , Guangzhou , China.
b Department of Pharmaceutical Sciences , West Virginia University School of Pharmacy , Morgantown , WV 26506.
Cell Cycle. 2018;17(3):367-376. doi: 10.1080/15384101.2018.1426413. Epub 2018 Feb 8.
Icariin (ICA) is a flavonoid glucoside derived from the Epimedium plant genus, which has potent regenerative properties and is used in western medicine to treat impotence. Recently, ICA has generated great interest in improving hepatic stellate cell function and cardiac rejuvenation. However, how this natural component functions in hematopoiesis remains unexplored. Here we have examined the role of ICA on hematopoietic stem cells (HSCs) using the cancer-prone disease model of Fanconi anemia (FA), an inherited bone marrow failure syndrome with extremely high risk of leukemic predisposition. We show that ICA reverses the less quiescent status of HSCs deficient for the Fanca or Fancd2 gene, and improves the ability of these mutant stem cells to form colony formation units (CFU) in vitro and reconstitutes hematopoiesis in transplanted recipients. Further analysis reveals that ICA upregulates enzyme activity of the chromatin binding protein SIRT6 in Fanca and Fancd2 HSCs, both of which have an intrinsic low SIRT6 activity. Furthermore, forced expression of SIRT6 blocks the natural decline of quiescent HSCs in Fanca or Fancd2 mice and improves the repopulating capacity of these mutant HSCs in irradiated recipients. Mechanistically, ICA enhances SIRT6-mediated H3K9 deacetylation on the promoter of NF-κB and represses the expression of NF-κB target genes. Together, our findings indicate that ICA improves the function of HSCs by stimulating SIRT6 activity and contributes to the regenerative effect of ICA.
淫羊藿苷(ICA)是一种从淫羊藿属植物中提取的类黄酮糖苷,具有很强的再生特性,在西医中用于治疗阳痿。最近,ICA 在改善肝星状细胞功能和心脏年轻化方面引起了极大的兴趣。然而,这种天然成分在造血方面的作用仍未被探索。在这里,我们使用范可尼贫血(FA)这种易患癌症的疾病模型研究了 ICA 对造血干细胞(HSCs)的作用,FA 是一种遗传性骨髓衰竭综合征,具有极高的白血病易感性。我们发现 ICA 逆转了 Fanca 或 Fancd2 基因缺陷的 HSCs 中较少静止的状态,并提高了这些突变干细胞在体外形成集落形成单位(CFU)的能力,并重建了移植受体的造血。进一步的分析表明,ICA 上调了 Fanca 和 Fancd2 HSCs 中染色质结合蛋白 SIRT6 的酶活性,这两种蛋白的 SIRT6 活性都较低。此外,SIRT6 的强制表达阻止了 Fanca 或 Fancd2 小鼠中静止 HSCs 的自然下降,并提高了这些突变 HSCs 在辐照受体中的再群体能力。从机制上讲,ICA 通过刺激 SIRT6 活性增强了 SIRT6 介导的 H3K9 去乙酰化作用,并抑制了 NF-κB 靶基因的表达。总之,我们的研究结果表明,ICA 通过刺激 SIRT6 活性改善了 HSCs 的功能,并为 ICA 的再生作用做出了贡献。