Hercus T R, Cambareri B, Dottore M, Woodcock J, Bagley C J, Vadas M A, Shannon M F, Lopez A F
Division of Human Immunology, Hanson Centre for Cancer Research, Institute of Medical and Veterinary Science, Adelaide, South Australia.
Blood. 1994 Jun 15;83(12):3500-8.
Residues within the first and fourth helices of human granulocyte-macrophage colony-stimulating factor (hGM-CSF) were analyzed for their role in biologic activity and interaction with the alpha- and beta-chains of the hGM-CSF receptor. Within the first helix substitution of the surface residues Glu14, Asn17, Gln20, Arg23, Arg24, and Asn27 or the buried residues Ala18, Leu25, and Leu28 did not significantly impair bioactivity or receptor binding. Substitutions at the buried residues Ala22 and Leu26 had intermediate bioactivity. However, substitutions of the surface residue Glu21 or the buried residue Ile19 reduced the relative bioactivity of the analogues to as little as 0.45% and 0.3%, respectively. Substitution of the charged surface residues of the fourth helix showed that substitution at Glu104, Lys107, and Lys111 had no significant effect on bioactivity, but substitution at Glu108 and Asp112 reduced the potency of the analogues to 34% and 7%, respectively. Receptor binding studies showed that, whereas Glu21 is the critical residue for binding to the hGM-CSF-receptor beta-chain, Asp112 is likely to be involved in binding to the GM-CSF-receptor alpha-chain. These results establish the relative contribution of residues in the first and fourth helices for GM-CSF bioactivity and receptor binding, and support a model where the fourth helix of GM-CSF interacts with the alpha-chain, and the first helix with the beta-chain of the GM-CSF receptor.
对人粒细胞-巨噬细胞集落刺激因子(hGM-CSF)第一和第四螺旋内的残基进行了分析,以研究它们在生物活性以及与hGM-CSF受体α链和β链相互作用中的作用。在第一螺旋内,表面残基Glu14、Asn17、Gln20、Arg23、Arg24和Asn27或埋藏残基Ala18、Leu25和Leu28的取代并没有显著损害生物活性或受体结合。埋藏残基Ala22和Leu26的取代具有中等生物活性。然而,表面残基Glu21或埋藏残基Ile19的取代分别将类似物的相对生物活性降低至0.45%和0.3%。第四螺旋带电表面残基的取代表明,Glu104、Lys107和Lys111的取代对生物活性没有显著影响,但Glu108和Asp112的取代分别将类似物的效力降低至34%和7%。受体结合研究表明,虽然Glu21是与hGM-CSF受体β链结合的关键残基,但Asp112可能参与与GM-CSF受体α链的结合。这些结果确定了第一和第四螺旋中残基对GM-CSF生物活性和受体结合的相对贡献,并支持一个模型,即GM-CSF的第四螺旋与GM-CSF受体的α链相互作用,第一螺旋与β链相互作用。