首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Support of human hematopoiesis in long-term bone marrow cultures by murine stromal cells selectively expressing the membrane-bound and secreted forms of the human homolog of the steel gene product stem cell factor.
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Support of human hematopoiesis in long-term bone marrow cultures by murine stromal cells selectively expressing the membrane-bound and secreted forms of the human homolog of the steel gene product stem cell factor.

机译:小鼠基质细胞在长期骨髓培养中支持人类造血功能选择性表达钢基因产物干细胞因子的人类同源物的膜结合和分泌形式。

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摘要

The maintenance and differentiation of hematopoietic stem cells is influenced by cells making up the hematopoietic microenvironment (HM), including bone marrow-derived stromal cells. We and several other investigators have recently demonstrated the molecular basis of abnormal HM observed in the steel mutant mouse and cloned the normal cDNA products of this gene (termed SCF, KL, or MCF). In this report, we focus on the human counterpart of the mouse Steel (Sl) gene. Alternative splicing of the human SCF pre-mRNA transcript results in secreted and membrane-bound forms of the protein. To investigate the role of these two forms of human SCF, we targeted an immortalized stromal cell line derived from fetal murine homozygous (Sl/Sl) SCF-deficient embryos for gene transfer of various human cDNAs encoding SCF. We report that stable stromal cell transfectants can differentially process the two forms of human SCF protein product. We also demonstrate that both soluble SCF and membrane-bound SCF are active in increasing the number of human progenitor cells in the context of stromal cell cultures, although in a qualitatively different manner. Hence, the membrane-bound form of SCF may play an important role in the cell-cell interactions observed between stromal and hematopoietic cells both in vitro and in vivo.
机译:造血干细胞的维持和分化受组成造血微环境(HM)的细胞(包括骨髓源性基质细胞)的影响。我们和其他一些研究人员最近证明了在钢突变小鼠中观察到的异常HM的分子基础,并克隆了该基因的正常cDNA产物(称为SCF,KL或MCF)。在本报告中,我们重点关注小鼠Steel(Sl)基因的人类对应物。人SCF前mRNA转录物的选择性剪接导致蛋白质的分泌形式和膜结合形式。为了研究这两种形式的人类SCF的作用,我们针对了从胎儿鼠纯合(S1 / S1)SCF缺陷型胚胎衍生的永生基质细胞系,以进行各种编码SCF的人类cDNA的基因转移。我们报道稳定的基质细胞转染子可以差异化处理人类SCF蛋白产物的两种形式。我们还证明了可溶性SCF和膜结合SCF都可以在基质细胞培养的背景下增加人类祖细胞的数量,尽管在质上有不同的方式。因此,在体外和体内,SCF的膜结合形式可能在基质细胞和造血细胞之间观察到的细胞间相互作用中起重要作用。

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