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葫芦素 D 通过激活 p38 通路和稳定 γ-珠蛋白 mRNA 诱导 K562 细胞和人造血祖细胞中的胎儿血红蛋白合成。

Cucurbitacin D induces fetal hemoglobin synthesis in K562 cells and human hematopoietic progenitors through activation of p38 pathway and stabilization of the γ-globin mRNA.

机构信息

Department of Biology, the Chinese University of Hong Kong, Shatin, Hong Kong.

出版信息

Blood Cells Mol Dis. 2010 Dec 15;45(4):269-75. doi: 10.1016/j.bcmd.2010.09.004. Epub 2010 Oct 6.

Abstract

The search for novel therapeutic candidates targeting fetal hemoglobin (HbF) activation to reduce the imbalance of globin genes is regarded as a promising approach for the clinical management of sickle cell disease and β-thalassemia. For the first time, we identified cucurbitacin D (CuD), an oxygenated tetracyclic triterpenoid, as a molecular entity inducing γ-globin gene expression and HbF synthesis in K562 cells and human hematopoietic progenitors from a β-thalassemia patient. CuD demonstrated a higher potency in HbF induction when compared with hydroxyurea, which was revealed by the evidence that CuD results in a higher fetal cell percentage and greater HbF content in K562 cells, in addition, to being less cytotoxic. Moreover, CuD also promotes higher HbF expression in primary erythroid cells. In the study to elucidate the molecular mechanisms of CuD's action, our data indicated that CuD-stimulated HbF synthesis was mediated by p38 pathway activation. At the post-transcriptional level, CuD treatment led to a significant elongation of the γ-globin mRNA half-life in K562 cells. Taken together, the results suggest that CuD may be a potential therapeutic agent for β-hemoglobinopathies, including sickle cell anemia and β-thalassemia.

摘要

寻找新型治疗候选物以激活胎儿血红蛋白 (HbF) 以减少球蛋白基因失衡,被认为是治疗镰状细胞病和β-地中海贫血的有前途的方法。我们首次发现,葫芦素 D(CuD)是一种含氧四环三萜,可诱导 K562 细胞和来自β-地中海贫血患者的造血祖细胞中的γ-珠蛋白基因表达和 HbF 合成。与羟脲相比,CuD 在诱导 HbF 方面具有更高的效力,这一点可以通过以下证据证明:CuD 导致 K562 细胞中的胎儿细胞百分比更高,HbF 含量更高,而且细胞毒性更低。此外,CuD 还可促进原红细胞中更高的 HbF 表达。在阐明 CuD 作用的分子机制的研究中,我们的数据表明,CuD 刺激的 HbF 合成是通过 p38 途径的激活介导的。在转录后水平上,CuD 处理导致 K562 细胞中 γ-珠蛋白 mRNA 半衰期显著延长。总之,这些结果表明,CuD 可能是治疗β-血红蛋白病(包括镰状细胞贫血和β-地中海贫血)的潜在治疗剂。

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