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粒细胞集落刺激因子受体胞外结构域通过配体结合实现二聚化:单价配体诱导形成2:2复合物。

Dimerization of the extracellular domain of granuloycte-colony stimulating factor receptor by ligand binding: a monovalent ligand induces 2:2 complexes.

作者信息

Horan T, Wen J, Narhi L, Parker V, Garcia A, Arakawa T, Philo J

机构信息

Amgen Inc., Amgen Center, Thousands Oaks, California 91320-1789, USA.

出版信息

Biochemistry. 1996 Apr 16;35(15):4886-96. doi: 10.1021/bi9525841.

Abstract

Granulocyte-colony stimulating factor (G-CSF) binds to a specific cell surface receptor and induces signals for growth and differentiation in cells of granulocyte hematopoietic lineage. In order to understand how G-CSF binding initiates signals into these cells, we have studied its interactions with the entire extracellular domain of the receptor (sG-CSFR). The sG-CSFR was purified from CHO cell conditioned media with a G-CSF affinity column, resting in a preparation fully competent for ligand binding. However, when sG-CSFR was purified by conventional means, i.e., without affinity chromatography, only about half was competent. Therefore, all studies were carried out using affinity-purified material. The sG-CSFR exhibited a weak self-association into a dimer with a dissociation constant of 200microM in the absence of G-CSF. Addition of G-CSF dimerizes the receptor, with a preferred stoichiometry of 2 G-CSF molecules plus 2 receptors. Unexpectedly, receptor-receptor interactions rather than through two receptors binding to the same G-CSF molecule; i.e., G-CSF is a monovalent ligand. G-CSF binding to the receptor monomer occurs with high affinity. The binding of G-CSF also enhances the receptor-receptor dimerization; when G-CSF is bound to both receptors, dimerization is enhanced 2000-fold, while the interaction of a 1:1 receptor-ligand complex with a second ligand-free receptor is enhanced 80-fold. Thus, the mechanism of receptor dimerization is fundamentally different than that of related cytokine receptors such as growth hormone and erythropoietin receptors. Circular dichroic spectra showed a small but significant conformational change of receptor upon binding G-CSF. This is consistent with the idea that G-CSF binding alters the conformation of the receptor, resulting in an increase in receptor-receptor interactions.

摘要

粒细胞集落刺激因子(G-CSF)与特定的细胞表面受体结合,并在粒细胞造血谱系的细胞中诱导生长和分化信号。为了了解G-CSF结合如何将信号传导至这些细胞,我们研究了它与受体的整个细胞外结构域(sG-CSFR)的相互作用。通过G-CSF亲和柱从CHO细胞条件培养基中纯化sG-CSFR,得到的制剂完全能够进行配体结合。然而,当通过常规方法(即不进行亲和色谱法)纯化sG-CSFR时,只有大约一半具有活性。因此,所有研究均使用亲和纯化的材料进行。在没有G-CSF的情况下,sG-CSFR表现出微弱的自我缔合形成二聚体,解离常数为200μM。添加G-CSF会使受体二聚化,优选的化学计量比为2个G-CSF分子加2个受体。出乎意料的是,受体-受体相互作用并非通过两个受体结合到同一个G-CSF分子上;即,G-CSF是单价配体。G-CSF与受体单体的结合具有高亲和力。G-CSF的结合还增强了受体-受体二聚化;当G-CSF与两个受体都结合时,二聚化增强2000倍,而1:1受体-配体复合物与第二个无配体受体的相互作用增强80倍。因此,受体二聚化的机制与生长激素和促红细胞生成素受体等相关细胞因子受体的机制根本不同。圆二色光谱显示,结合G-CSF后受体的构象发生了微小但显著的变化。这与G-CSF结合改变受体构象从而导致受体-受体相互作用增加的观点一致。

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