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活化单核细胞产生人DA细胞白细胞介素(HILDA)/白血病抑制因子(LIF)

Production of human interleukin for DA cells (HILDA)/leukemia inhibitory factor (LIF) by activated monocytes.

作者信息

Anegon I, Moreau J F, Godard A, Jacques Y, Peyrat M A, Hallet M M, Wong G, Soulillou J P

机构信息

INSERM U211, Nantes, France.

出版信息

Cell Immunol. 1990 Oct 1;130(1):50-65. doi: 10.1016/0008-8749(90)90161-j.

Abstract

We demonstrate mRNA accumulation and production of HILDA/LIF by human activated Mo, monocyte-derived macrophages and myelomonocytic cell lines. Among the various stimuli tested, the synergistic combination of phorbol diester and VD3 was the most potent inducer of HILDA/LIF gene expression. The kinetics of mRNA accumulation on activated Mo showed a stimulation peak at 24 hr which declined thereafter. HILDA/LIF activity in culture supernatants was detected at 24 hr and reached a plateau at 72 hr of culture. In contrast to Mo, PBL did not accumulate HILDA/LIF mRNA upon culture with PDBu and VD3, whereas PHA and the combination of PDBu and A23187 induced HILDA/LIF mRNA accumulation and secretion in the culture supernatant. To exclude the possibility that HILDA/LIF was produced by contaminating PBL, highly enriched Mo preparations were used, which were devoid of T cells as assessed by the absence of TCR-beta chain mRNA transcripts. HILDA/LIF production by monocytic cells was further documented by the capacity of stimulated U937 cell conditioned medium to compete with 125I-labeled nHILDA/LIF for binding to its receptor on murine M1 cells. Under the synergistic effect of PDBu and VD3 stimulation, Mo-derived macrophages as well as HL-60 and U937 cell lines accumulated HILDA/LIF mRNA and produced this cytokine with identical kinetics as for Mo. Finally, we show that HILDA/LIF mRNA accumulation in U937 cells upon stimulation with PDBu, or the combination of PDBu and VD3, was inhibited in the presence of the protein synthesis inhibitor CHX. These results document for the first time that human Mo, when stimulated appropriately in vitro, can express the HILDA/LIF gene and its product, and that intermediate proteins must be newly synthesized in this process.

摘要

我们证明了人类活化的单核细胞(Mo)、单核细胞衍生的巨噬细胞和骨髓单核细胞系可积累HILDA/LIF的mRNA并产生该蛋白。在测试的各种刺激因素中,佛波酯和维生素D3(VD3)的协同组合是HILDA/LIF基因表达的最有效诱导剂。活化的Mo上mRNA积累的动力学显示,在24小时出现刺激峰值,随后下降。培养上清液中的HILDA/LIF活性在24小时时被检测到,并在培养72小时时达到平台期。与Mo不同,外周血淋巴细胞(PBL)在用佛波醇丁酸酯(PDBu)和VD3培养时不会积累HILDA/LIF mRNA,而植物血凝素(PHA)以及PDBu和A23187的组合可诱导HILDA/LIF mRNA的积累并分泌到培养上清液中。为排除HILDA/LIF是由污染的PBL产生的可能性,使用了高度富集的Mo制剂,通过缺乏T细胞受体β链mRNA转录本来评估,这些制剂不含T细胞。刺激的U937细胞条件培养基与125I标记的天然HILDA/LIF竞争结合其在小鼠M1细胞上的受体的能力,进一步证明了单核细胞产生HILDA/LIF。在PDBu和VD3刺激的协同作用下,Mo衍生的巨噬细胞以及HL-60和U937细胞系积累HILDA/LIF mRNA,并以与Mo相同的动力学产生这种细胞因子。最后,我们表明,在存在蛋白质合成抑制剂环己酰亚胺(CHX)的情况下,PDBu或PDBu与VD3的组合刺激后,U937细胞中HILDA/LIF mRNA的积累受到抑制。这些结果首次证明,人类Mo在体外适当刺激时可以表达HILDA/LIF基因及其产物,并且在此过程中必须新合成中间蛋白。

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