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在大肠杆菌中产生后纯化的重组小鼠粒细胞巨噬细胞集落刺激因子对造血细胞的体外作用:与纯化的天然粒细胞巨噬细胞集落刺激因子的比较。

In vitro actions on hemopoietic cells of recombinant murine GM-CSF purified after production in Escherichia coli: comparison with purified native GM-CSF.

作者信息

Metcalf D, Burgess A W, Johnson G R, Nicola N A, Nice E C, DeLamarter J, Thatcher D R, Mermod J J

出版信息

J Cell Physiol. 1986 Sep;128(3):421-31. doi: 10.1002/jcp.1041280311.

Abstract

Recombinant murine GM-CSF produced in Escherichia coli was purified to homogeneity and tested in parallel with purified native GM-CSF. Both recombinant and native GM-CSF stimulated granulocyte and/or macrophage colony formation by adult and fetal mouse progenitor cells, and with adult marrow cells the specific activity of the recombinant GM-CSF (25 X 10(8) U/mg) was similar to that of the native form (15 X 10(8) U/mg). At high concentrations (greater than 200 U/ml), both forms of GM-CSF also stimulated eosinophil colony formation by adult marrow cells and, at very high concentrations (greater than 800 U/ml), megakaryocyte and some erythroid and mixed-erythroid colony formation. Recombinant GM-CSF was as effective in stimulating the proliferation of the GM-CSF-dependent cell line FD as the native molecule. Both recombinant and native GM-CSF were able to induce partial differentiation in colonies of WEHI-3B myeloid leukemic cells. Recombinant GM-CSF competed effectively for the binding of 125I-labeled native GM-CSF to hemopoietic cells, and antiserum to recombinant GM-CSF also neutralized the biological activity of native GM-CSF. The bacterially synthesized GM-CSF was a slightly more effective stimulus for megakaryocyte colony formation than the native molecule. The demonstration that purified bacterially synthesized GM-CSF is biologically active in vitro now permits studies to be undertaken on the in vivo effects of this material.

摘要

在大肠杆菌中产生的重组小鼠粒细胞巨噬细胞集落刺激因子(GM-CSF)被纯化至同质,并与纯化的天然GM-CSF进行平行测试。重组GM-CSF和天然GM-CSF均能刺激成年和胎儿小鼠祖细胞形成粒细胞和/或巨噬细胞集落,对于成年骨髓细胞,重组GM-CSF的比活性(25×10⁸ U/mg)与天然形式(15×10⁸ U/mg)相似。在高浓度(大于200 U/ml)时,两种形式的GM-CSF还能刺激成年骨髓细胞形成嗜酸性粒细胞集落,在非常高的浓度(大于800 U/ml)时,能刺激巨核细胞以及一些红系和混合红系集落形成。重组GM-CSF在刺激GM-CSF依赖细胞系FD增殖方面与天然分子一样有效。重组GM-CSF和天然GM-CSF都能够诱导WEHI-3B髓系白血病细胞集落发生部分分化。重组GM-CSF能有效地竞争¹²⁵I标记的天然GM-CSF与造血细胞的结合,抗重组GM-CSF血清也能中和天然GM-CSF的生物活性。细菌合成的GM-CSF对巨核细胞集落形成的刺激作用比天然分子略强。纯化的细菌合成GM-CSF在体外具有生物活性,这一证明现在使得能够对该物质的体内效应进行研究。

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