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c-myb基因缺失的胎肝基质中干细胞因子表达缺陷。

Defective stem cell factor expression in c-myb null fetal liver stroma.

作者信息

Sicurella C, Freeman R, Micallef S, Mucenski M L, Bertoncello I, Ramsay R G

机构信息

Peter MacCallum Cancer Institute, Melbourne, 8006, Australia.

出版信息

Blood Cells Mol Dis. 2001 Mar-Apr;27(2):470-8. doi: 10.1006/bcmd.2001.0407.

Abstract

High levels of c-Myb are observed in immature precursor myeloid and lymphoid cells, while downregulation of c-myb accompanies terminal differentiation to a mature phenotype. This has established c-Myb as a crucial transcription factor for hematopoiesis. Further evidence for this is the embryonic death of the c-myb homozygous mutant mouse at ED15 due to defective fetal liver erythropoiesis. Cells from fetal liver of wild-type and c-myb-/- embryos were examined in detail for their hematopoietic potential and the capacity of the stroma to support wild-type hematopoiesis. The c-myb-/- fetal liver was shown to harbor sevenfold fewer spleen focus-forming cells and a similarly lower number of cells with long-term repopulating capacity (high proliferative potential cells). However, shorter term repopulating cells were not substantially reduced. c-myb-/- stromal cells were unable to support the proliferation of wild-type bone marrow lineage-negative cells. This was found to be partly due to a decrease in stem cell factor (SCF) expression while partial rescue of the stromal cell cultures was achieved through the addition of exogenous SCF. DNA binding studies for two sites within the SCF promoter demonstrated an in vitro interaction between the SCF promoter and c-Myb and transient transfection studies demonstrated that c-Myb could substantially transactivate the SCF promoter in HEK293 cells. These data explain why the c-myb-/- embryos are so impaired in their ability to establish hematopoiesis.

摘要

在未成熟的髓系和淋巴系前体细胞中可观察到高水平的c-Myb,而c-myb的下调伴随着向成熟表型的终末分化。这已将c-Myb确立为造血过程中的关键转录因子。对此的进一步证据是,c-myb纯合突变小鼠在胚胎发育第15天(ED15)因胎儿肝脏红细胞生成缺陷而胚胎死亡。详细检查了野生型和c-myb-/-胚胎胎儿肝脏细胞的造血潜能以及基质支持野生型造血的能力。结果显示,c-myb-/-胎儿肝脏中脾集落形成细胞数量减少了7倍,具有长期重建造血能力的细胞数量(高增殖潜能细胞)也同样减少。然而,短期重建造血的细胞数量并未显著减少。c-myb-/-基质细胞无法支持野生型骨髓谱系阴性细胞的增殖。发现这部分是由于干细胞因子(SCF)表达降低,而通过添加外源性SCF可部分挽救基质细胞培养。对SCF启动子内两个位点的DNA结合研究表明,SCF启动子与c-Myb在体外存在相互作用,瞬时转染研究表明c-Myb可在HEK293细胞中显著激活SCF启动子。这些数据解释了为什么c-myb-/-胚胎在建立造血能力方面如此受损。

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