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高亲和力配体结合对于粒细胞-巨噬细胞集落刺激因子受体激活并非必不可少。

High affinity ligand binding is not essential for granulocyte-macrophage colony-stimulating factor receptor activation.

作者信息

Shanafelt A B, Kastelein R A

机构信息

Department of Molecular Biology, DNAX Research Institute of Molecular and Cellular Biology, Palo Alto, California 94304-1104.

出版信息

J Biol Chem. 1992 Dec 15;267(35):25466-72.

PMID:1460041
Abstract

The high affinity receptor of the cytokine granulocyte-macrophage colony-stimulating factor (GM-CSF) is a heterodimer composed of two members of the cytokine receptor superfamily. GM-CSF binds to the alpha-subunit (GM-R alpha) with low affinity and to the receptor alpha beta complex (GM-R alpha beta) with high affinity. The GM-CSF.GM-R alpha beta complex is responsible for biological activity. Interactions of the N-terminal helix of mouse GM-CSF with mGM-R alpha beta were examined by introducing single alanine substitutions of hydrophilic residues in this region of mGM-CSF. The consequences of these substitutions were evaluated by receptor binding and biological assays. Although all mutant proteins exhibited near wild-type biological activity, most were defective in high affinity receptor binding. In particular, substitution of Glu-21 with alanine abrogated high affinity binding leaving low affinity binding unaffected. Despite near wild-type biological activity, no detectable binding interaction of this mutant with mGM-R beta in the context of mGM-R alpha beta was observed. Cross-linking studies showed an apparent interaction of this mutant protein with mGM-R alpha beta. The deficient receptor binding characteristics and near wild-type biological activity of this mutant protein demonstrate that mGM-CSF receptor activation can occur independently of high affinity binding, suggesting that conformational changes in the receptor induced by mGM-CSF binding generate an active ligand-receptor complex.

摘要

细胞因子粒细胞-巨噬细胞集落刺激因子(GM-CSF)的高亲和力受体是一种异二聚体,由细胞因子受体超家族的两个成员组成。GM-CSF以低亲和力与α亚基(GM-Rα)结合,以高亲和力与受体αβ复合物(GM-Rαβ)结合。GM-CSF.GM-Rαβ复合物负责生物学活性。通过在小鼠GM-CSF的该区域引入亲水性残基的单个丙氨酸取代,研究了小鼠GM-CSF的N端螺旋与mGM-Rαβ的相互作用。通过受体结合和生物学测定评估这些取代的后果。尽管所有突变蛋白都表现出接近野生型的生物学活性,但大多数在高亲和力受体结合方面存在缺陷。特别是,用丙氨酸取代Glu-21消除了高亲和力结合,而低亲和力结合不受影响。尽管具有接近野生型的生物学活性,但在mGM-Rαβ的背景下未观察到该突变体与mGM-Rβ的可检测结合相互作用。交联研究表明该突变蛋白与mGM-Rαβ存在明显的相互作用。该突变蛋白的受体结合特性缺陷和接近野生型的生物学活性表明,mGM-CSF受体激活可以独立于高亲和力结合而发生,这表明mGM-CSF结合诱导的受体构象变化产生了活性配体-受体复合物。

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