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重组人促红细胞生成素在小鼠红系前体细胞中的结合与内化

Binding and internalization of recombinant human erythropoietin in murine erythroid precursor cells.

作者信息

Mufson R A, Gesner T G

出版信息

Blood. 1987 May;69(5):1485-90.

PMID:3567362
Abstract

Erythropoietin (EPO) biosynthetically labelled with [35S]cysteine was produced from Chinese hamster ovary (CHO) cells containing amplified copies of human EPO cDNA. The glycosylated recombinant [35S]EPO, purified to virtual radiochemical homogeneity, was biologically active. We studied the interaction of this labeled recombinant EPO with erythroid precursor cells from mice made anemic with phenylhydrazine. The [35S]-labeled molecule bound to erythroid precursors in a time- and temperature-dependent manner. The binding was specific for EPO, and neither insulin, transferrin, epidermal growth factor, nor multiplication stimulating activity could compete for EPO binding sites. In the presence of 0.2% sodium azide, which blocks 80% to 90% of internalization, the recombinant molecule bound with an apparent Kd of 750 pmol/L and 100 to 200 binding sites per cell at 37 degrees C. Asialo-EPO was a more effective competitor than sialated EPO for the available binding sites. Thus, the enhanced biological specific activity of asialo-EPO could result from its enhanced binding affinity. We also studied recombinant human EPO labeled with 125I and found that it also bound to the erythroid cells in a saturable and specific manner. After 90 minutes of incubation at 37 degrees C, most of the bound [35S]EPO was internalized, whereas most of the [125I]EPO remained on the cell surface. The reduced internalization of the iodinated molecule could account for the previously reported functional deficit associated with iodination.

摘要

用[35S]半胱氨酸进行生物合成标记的促红细胞生成素(EPO)是由含有人EPO cDNA扩增拷贝的中国仓鼠卵巢(CHO)细胞产生的。纯化至几乎放射化学纯的糖基化重组[35S]EPO具有生物活性。我们研究了这种标记的重组EPO与用苯肼造成贫血的小鼠的红系前体细胞之间的相互作用。[35S]标记的分子以时间和温度依赖性方式与红系前体细胞结合。这种结合对EPO具有特异性,胰岛素、转铁蛋白、表皮生长因子或增殖刺激活性均不能竞争EPO结合位点。在存在0.2%叠氮化钠的情况下(叠氮化钠可阻断80%至90%的内化作用),重组分子在37℃时的表观解离常数(Kd)为750 pmol/L,每个细胞有100至200个结合位点。去唾液酸EPO比唾液酸化EPO更有效地竞争可用的结合位点。因此,去唾液酸EPO增强的生物学比活性可能源于其增强的结合亲和力。我们还研究了用[125I]标记的重组人EPO,发现它也以可饱和和特异性的方式与红系细胞结合。在37℃孵育90分钟后,大部分结合的[35S]EPO被内化,而大部分[125I]EPO仍留在细胞表面。碘化分子内化减少可能解释了先前报道的与碘化相关的功能缺陷。

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