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粒细胞-巨噬细胞集落刺激因子受体通过上调亲和力转换β亚基(KH97),在髓系成熟过程中改变其结合特性。

Granulocyte-macrophage colony-stimulating factor receptors alter their binding characteristics during myeloid maturation through up-regulation of the affinity converting beta subunit (KH97).

作者信息

Budel L M, Hoogerbrugge H, Pouwels K, van Buitenen C, Delwel R, Löwenberg B, Touw I P

机构信息

Dr. Daniel den Hoed Cancer Center, Rotterdam, The Netherlands.

出版信息

J Biol Chem. 1993 May 15;268(14):10154-9.

PMID:8486685
Abstract

Acute myeloid leukemia blasts express dual affinity (high and low) granulocyte-macrophage colony-stimulating factor (GM-CSF) binding, and the high affinity GM-CSF binding is counteracted by excess interleukin-3 (IL-3). Neutrophils express a single class of GM-CSF-R with intermediate affinity that lack IL-3 cross-reactivity. Here we demonstrate the differentiation associated changes of GM-CSF binding characteristics in three models representative of different stages of myeloid maturation. We find that high affinity GM-CSF binding is converted into intermediate affinity binding, which still cross-reacts with IL-3, beyond the stage of promyelocytes. During terminal maturation towards neutrophils, IL-3 cross-reactivity is gradually lost. We sought to determine the mechanism underlying the affinity conversion of the GM-CSF-R. Northern and reverse transcriptase-polymerase chain reaction analysis of GM-CSF-R alpha and -beta c (KH97) transcripts did not provide indications for the involvement of GM-CSF-R splice variants in the formation of the intermediate affinity GM-CSFR complex. In COS-cell transfectants with increasing amounts of beta c in the presence of a fixed number of GM-CSF-R alpha chains, the high affinity GM-CSF binding converted into intermediate affinity GM-CSF binding. These results are discussed in view of the concept that increasing expression of beta c subunits may cause alternative oligomerization of the GM-CSF-R alpha and -beta c subunits resulting in the formation of intermediate rather than high affinity GM-CSFR alpha.beta c complexes.

摘要

急性髓系白血病母细胞表达双亲和力(高亲和力和低亲和力)的粒细胞-巨噬细胞集落刺激因子(GM-CSF)结合,且高亲和力GM-CSF结合会被过量的白细胞介素-3(IL-3)抵消。中性粒细胞表达一类具有中等亲和力的GM-CSF受体,该受体缺乏IL-3交叉反应性。在此,我们在代表髓系成熟不同阶段的三个模型中展示了GM-CSF结合特性与分化相关的变化。我们发现,在早幼粒细胞阶段之后,高亲和力GM-CSF结合转变为中等亲和力结合,而这种中等亲和力结合仍与IL-3发生交叉反应。在向中性粒细胞的终末成熟过程中,IL-3交叉反应性逐渐丧失。我们试图确定GM-CSF受体亲和力转换的潜在机制。对GM-CSF受体α和βc(KH97)转录本进行的Northern印迹分析和逆转录-聚合酶链反应分析并未表明GM-CSF受体剪接变体参与了中等亲和力GM-CSF受体复合物的形成。在GM-CSF受体α链数量固定的情况下,βc含量不断增加的COS细胞转染子中,高亲和力GM-CSF结合转变为中等亲和力GM-CSF结合。鉴于βc亚基表达增加可能导致GM-CSF受体α和βc亚基发生替代性寡聚化,从而形成中等亲和力而非高亲和力的GM-CSF受体α.βc复合物这一概念,对这些结果进行了讨论。

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