Lock P, Metcalf D, Nicola N A
Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria, Australia.
Proc Natl Acad Sci U S A. 1994 Jan 4;91(1):252-6. doi: 10.1073/pnas.91.1.252.
High-affinity receptors for granulocyte-macrophage colony-stimulating factor (GM-CSF), interleukin 3, and interleukin 5 consist of ligand-specific alpha chains (low-affinity subunits) and a common beta chain (beta c) that converts each complex to a high-affinity form. Although beta c alone has no detectable cytokine-binding activity, amino acid substitutions for Glu-21 of human GM-CSF significantly reduce high-affinity but not low-affinity binding, implying that beta c interacts directly with GM-CSF during formation of the high-affinity receptor but only in the presence of the alpha chain. A potential GM-CSF-binding determinant was identified in the second hemopoietin domain of beta c, and the role of individual residues within this region was investigated by determining the ability of mutated beta c chains to confer high-affinity binding when coexpressed with the alpha subunit of the GM-CSF receptor in COS cells. Substitutions involving Met-363, Arg-364, Tyr-365, and Glu-366 did not affect high-affinity binding. However, substitution of His-367 by lysine or glutamine abolished high-affinity binding, suggesting that this residue may form an important part of the high-affinity GM-CSF-binding determinant. Consistent with the loss of high-affinity binding, higher concentrations of human GM-CSF were required to stimulate proliferation of CTLL-2 cell lines transfected with cDNAs for GM-CSF receptor alpha chain and His-367 beta c mutant than those expressing GM-CSF receptor alpha subunit and beta c wild type.
粒细胞-巨噬细胞集落刺激因子(GM-CSF)、白细胞介素3和白细胞介素5的高亲和力受体由配体特异性α链(低亲和力亚基)和一条共同的β链(βc)组成,β链可将每个复合物转变为高亲和力形式。虽然单独的βc没有可检测到的细胞因子结合活性,但人GM-CSF的Glu-21氨基酸替代显著降低高亲和力结合而非低亲和力结合,这意味着βc在高亲和力受体形成过程中直接与GM-CSF相互作用,但仅在α链存在时才会如此。在βc的第二个造血蛋白结构域中鉴定出一个潜在的GM-CSF结合决定簇,并通过确定突变的βc链与GM-CSF受体α亚基在COS细胞中共表达时赋予高亲和力结合的能力,来研究该区域内单个残基的作用。涉及Met-363、Arg-364、Tyr-365和Glu-366的替代不影响高亲和力结合。然而,用赖氨酸或谷氨酰胺替代His-367消除了高亲和力结合,这表明该残基可能构成高亲和力GM-CSF结合决定簇的重要部分。与高亲和力结合的丧失一致,与表达GM-CSF受体α亚基和βc野生型的细胞系相比,用GM-CSF受体α链和His-367βc突变体的cDNA转染的CTLL-2细胞系需要更高浓度的人GM-CSF来刺激其增殖。