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Flt3配体:一种造血干细胞因子,其活性与Steel因子不同。

The flt3 ligand: a hematopoietic stem cell factor whose activities are distinct from steel factor.

作者信息

Lyman S D, Brasel K, Rousseau A M, Williams D E

机构信息

Immunex Research and Development Corporation, Seattle, Washington.

出版信息

Stem Cells. 1994;12 Suppl 1:99-107; discussion 108-10.

PMID:7535149
Abstract

A number of growth factors have been described that affect the hematopoietic system. Among this group are Steel factor (also known as mast cell growth factor, stem cell factor and kit ligand), and the more recently described flt3 ligand. These factors have been shown to function by binding to and activating the c-kit and flt3 tyrosine kinase receptors, respectively. Both of these factors stimulate the growth of mouse and human hematopoietic progenitor cells. These factors therefore differ from such later acting hematopoietic factors as colony-stimulating factor (CSF)-1, which regulates the growth, survival and differentiation of monocytic cells through the c-fms tyrosine kinase receptor. Like Steel factor, the flt3 ligand has little biological activity on its own, but synergizes well with a number of other colony stimulating factors and interleukins. One major difference between the two factors appears to be their effect on mast cells. Steel factor stimulates both the proliferation and activation of mast cells, while preliminary data with the flt3 ligand suggests that it has no effect on mast cells. Although the flt3 ligand and Steel factor each act on early hematopoietic cells, differences in their activities suggest that they are not redundant and are both required for normal hematopoiesis.

摘要

已经描述了许多影响造血系统的生长因子。这一组中包括Steel因子(也称为肥大细胞生长因子、干细胞因子和kit配体),以及最近描述的flt3配体。这些因子已被证明分别通过与c-kit和flt3酪氨酸激酶受体结合并激活它们来发挥作用。这两种因子都能刺激小鼠和人类造血祖细胞的生长。因此,这些因子与后期作用的造血因子如集落刺激因子(CSF)-1不同,CSF-1通过c-fms酪氨酸激酶受体调节单核细胞的生长、存活和分化。与Steel因子一样,flt3配体自身几乎没有生物学活性,但能与许多其他集落刺激因子和白细胞介素很好地协同作用。这两种因子之间的一个主要区别似乎在于它们对肥大细胞的影响。Steel因子刺激肥大细胞的增殖和活化,而flt3配体的初步数据表明它对肥大细胞没有影响。尽管flt3配体和Steel因子都作用于早期造血细胞,但它们活性的差异表明它们并非冗余,正常造血过程中两者都是必需的。

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