Horan T P, Martin F, Simonet L, Arakawa T, Philo J S
Amgen Inc., Thousand Oaks, CA 91320, USA.
J Biochem. 1997 Feb;121(2):370-5. doi: 10.1093/oxfordjournals.jbchem.a021597.
We have previously shown that the extracellular domain of granulocyte-colony stimulating factor receptor (soluble G-CSFR), prepared from CHO cell conditioned media, dimerizes upon binding its ligand, G-CSF. The most stable ligand-receptor complex occurs at a 2:2 stoichiometry, unlike the growth hormone and erythropoietin systems. In the latter cases, each ligand uses two sites to bring two receptors together. In this study, we have generated a truncated G-CSF receptor, known to be sufficient for high affinity ligand binding, which consists of an Ig-like domain and a cytokine receptor homology module. With an affinity purified receptor, sedimentation equilibrium experiments clearly demonstrated that this truncated form of the receptor behaves very similarly to the entire extracellular domain. The sedimentation equilibrium data are consistent with the model that the truncated receptor has a weak tendency to self-associate into a dimer in the absence of a ligand, this receptor-receptor interaction is enhanced by ligand binding, and the most stable complex occurs at a 2:2 stoichiometry. These results are very different from those described by others for various murine G-CSF receptor constructs from either Escherichia coli or insect expression systems.
我们之前已经表明,从CHO细胞条件培养基中制备的粒细胞集落刺激因子受体的胞外域(可溶性G-CSFR)在结合其配体G-CSF时会二聚化。与生长激素和促红细胞生成素系统不同,最稳定的配体-受体复合物以2:2的化学计量比出现。在后两种情况下,每个配体使用两个位点将两个受体聚集在一起。在本研究中,我们生成了一种截短的G-CSF受体,已知其足以实现高亲和力配体结合,该受体由一个Ig样结构域和一个细胞因子受体同源模块组成。使用亲和纯化的受体,沉降平衡实验清楚地表明,这种截短形式的受体与整个胞外域的行为非常相似。沉降平衡数据与以下模型一致:在没有配体的情况下,截短的受体有弱的自缔合形成二聚体的倾向,配体结合会增强这种受体-受体相互作用,并且最稳定的复合物以2:2的化学计量比出现。这些结果与其他人描述的来自大肠杆菌或昆虫表达系统的各种小鼠G-CSF受体构建体的结果非常不同。