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重组长臂猿白细胞介素3在培养中支持人多谱系集落和原始细胞集落的形成:与重组人粒细胞-巨噬细胞集落刺激因子的比较。

Recombinant gibbon interleukin 3 supports formation of human multilineage colonies and blast cell colonies in culture: comparison with recombinant human granulocyte-macrophage colony-stimulating factor.

作者信息

Leary A G, Yang Y C, Clark S C, Gasson J C, Golde D W, Ogawa M

机构信息

VA Medical Center, Charleston, SC 29403.

出版信息

Blood. 1987 Nov;70(5):1343-8.

PMID:3311202
Abstract

The genetic sequences encoding the gibbon and human interleukin 3 (IL 3) proteins were molecularly cloned. The amino acid sequence of the mature gibbon IL 3 protein proved to share 93% homology with the corresponding human protein. We examined the effects of biosynthetic (recombinant) gibbon IL 3 on the proliferation and differentiation of an enriched population of human hematopoietic progenitors and compared the results with the effects of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF). Gibbon IL 3 supported the formation of various types of single lineage as well as multilineage colonies by My-10+ bone marrow cells in the presence of human erythropoietin (Ep). In contrast, recombinant human GM-CSF supported the formation of single-lineage colonies and only a small number of multilineage colonies. Both IL 3 and GM-CSF had significant erythroid burst-promoting activity (BPA). Delayed addition of gibbon IL 3 to low serum culture of My-10+ marrow cells supported the formation of blast cell colonies with variable but high replating capability. Human GM-CSF was less effective than IL 3 in support of multipotential blast cell colonies. These results are analogous to the effects of murine IL 3 and GM-CSF on murine progenitors and support the notion that the primary factor for multipotential progenitors is IL 3.

摘要

编码长臂猿和人白细胞介素3(IL-3)蛋白的基因序列进行了分子克隆。成熟长臂猿IL-3蛋白的氨基酸序列与相应的人蛋白有93%的同源性。我们检测了生物合成(重组)长臂猿IL-3对富集的人造血祖细胞增殖和分化的影响,并将结果与重组人粒细胞-巨噬细胞集落刺激因子(GM-CSF)的作用进行了比较。在人促红细胞生成素(Ep)存在的情况下,长臂猿IL-3支持My-10+骨髓细胞形成各种类型的单谱系以及多谱系集落。相比之下,重组人GM-CSF支持单谱系集落的形成以及少量多谱系集落的形成。IL-3和GM-CSF都具有显著的促红细胞爆式集落形成活性(BPA)。在My-10+骨髓细胞的低血清培养中延迟添加长臂猿IL-3支持具有可变但高再接种能力的原始细胞集落的形成。人GM-CSF在支持多能原始细胞集落方面不如IL-3有效。这些结果类似于小鼠IL-3和GM-CSF对小鼠祖细胞的作用,并支持多能祖细胞的主要因子是IL-3这一观点。

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