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重组HoxB4融合蛋白增强人胚胎干细胞的造血分化。

Recombinant HoxB4 fusion proteins enhance hematopoietic differentiation of human embryonic stem cells.

作者信息

Lu Shi-Jiang, Feng Qiang, Ivanova Yordanka, Luo Chenmei, Li Tong, Li Fei, Honig George R, Lanza Robert

机构信息

Advanced Cell Technology, Worcester, MA 01605, USA.

出版信息

Stem Cells Dev. 2007 Aug;16(4):547-59. doi: 10.1089/scd.2007.0002.

Abstract

Enforced expression of the HoxB4 gene promotes expansion of hematopoietic stem cells (HSCs) and enhances hematopoietic development of both murine and human embryonic stem (ES) cells. HoxB4- expanded HSCs have also been shown to retain their normal potential for differentiation and longterm self-renewal in vivo without the development of leukemia, suggesting that manipulation of HoxB4 expression might represent an effective way to expand functional HSCs for use in transplantation medicine. However, the genetic modification of cells poses clinical concerns, including a potentially increased risk of tumor genicity. Constitutive high-level ectopic viral expression of HoxB4 can also produce perturbations in the lineage differentiation of HSCs, an indication that uncontrolled HoxB4 manipulation may not be a satisfactory therapeutic strategy. Here we demonstrate that recombinant HoxB4 protein fused with a triple protein transduction domain (tPTD) promotes hematopoietic development of hES cells. The tPTD-HoxB4 protein enhanced the development of erythroid, myeloid, and multipotential progenitors in both early- and late-stage embryoid bodies (EBs). This effect varied considerably between different hES cell lines. Addition of the tPTD-HoxB4 protein did not alter the globin gene expression pattern; progeny derived from hES cells expressed high levels of embryonic (epsilon) and fetal (gamma) globin genes with or without tPTD-HoxB4 treatment. CD34+ cells derived from hES cells engrafted in bone marrow when transplanted into fetal CD1 mice, although supplementation of the differentiation medium with tPTD-HoxB4 protein did not result in increased repopulating capacity. This suggests that other gene(s), together with HoxB4, are required for generating more competitive HSCs. In summary, our study demonstrates that the tPTD-HoxB4 protein can be used with other recombinant proteins to efficiently generate transplantable HSCs from human ES cells.

摘要

HoxB4基因的强制表达可促进造血干细胞(HSC)的扩增,并增强小鼠和人类胚胎干细胞(ES)的造血发育。研究还表明,经HoxB4扩增的造血干细胞在体内仍保留其正常的分化潜力和长期自我更新能力,且不会引发白血病,这表明操纵HoxB4的表达可能是一种有效扩增功能性造血干细胞以用于移植医学的方法。然而,细胞的基因改造引发了临床担忧,包括潜在的肿瘤发生风险增加。HoxB4的组成型高水平异位病毒表达也会对造血干细胞的谱系分化产生干扰,这表明不受控制地操纵HoxB4可能不是一种令人满意的治疗策略。在此,我们证明与三重蛋白转导结构域(tPTD)融合的重组HoxB4蛋白可促进人胚胎干细胞的造血发育。tPTD-HoxB4蛋白增强了早期和晚期胚状体(EB)中红细胞、髓细胞和多能祖细胞的发育。不同的人胚胎干细胞系之间这种效应差异很大。添加tPTD-HoxB4蛋白不会改变珠蛋白基因的表达模式;无论是否用tPTD-HoxB4处理,人胚胎干细胞衍生的后代都表达高水平的胚胎(ε)和胎儿(γ)珠蛋白基因。当将人胚胎干细胞衍生的CD34+细胞移植到胎儿CD1小鼠体内时,它们可植入骨髓,尽管在分化培养基中补充tPTD-HoxB4蛋白并不会导致再增殖能力增强。这表明生成更具竞争力的造血干细胞还需要其他基因与HoxB4共同作用。总之,我们的研究表明,tPTD-HoxB4蛋白可与其他重组蛋白一起用于从人胚胎干细胞高效生成可移植的造血干细胞。

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