首页> 外文期刊>Biochemistry >DIMERIZATION OF THE EXTRACELLULAR DOMAIN OF THE ERYTHROPOIETIN (EPO) RECEPTOR BY EPO - ONE HIGH-AFFINITY AND ONE LOW-AFFINITY INTERACTION
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DIMERIZATION OF THE EXTRACELLULAR DOMAIN OF THE ERYTHROPOIETIN (EPO) RECEPTOR BY EPO - ONE HIGH-AFFINITY AND ONE LOW-AFFINITY INTERACTION

机译:EPO使红细胞生成素(EPO)受体的胞外域二聚化-一种高亲和力和一种低亲和力相互作用

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摘要

Although there is considerable evidence that signaling by the erythropoietin (EPO) receptor is. initiated when it is dimerized by binding EPO, it has been previously reported that the soluble extracellular domains of the EPO receptor (sEPOR) are not dimerized in the presence of EPO and are able to form only 1:1 complexes with EPO. We have now shown unambiguously by light scattering, sedimentation equilibrium, and titration calorimetry that two molecules of sEPOR can bind to a single EPO monomer but that the binding of the second sEPOR is similar to 1000-fold weaker than that of the first. Because this second binding interaction is quite weak (K-d of similar to 1 mu M), the 2:1 sEPOR . EPO complexes are easily dissociated during chromatography (forming the 1:1 complexes reported previously) and cannot be isolated in pure form. Global analysis of the sedimentation equilibrium data has enabled us to determine the binding constants and is consistent with a model in which EPO has two independent binding sites for sEPOR but cannot exclude anticooperative or sequential binding models. The influence of glycosylation of EPO and/or sEPOR on the binding affinities has also been investigated. Titration calorimetry is consistent with the sedimentation data and shows that the weaker binding site has a more negative Delta H. The relation of these results to the binding of EPO to membrane-bound receptors and to the phenomenon of apparent high-affinity and low-affinity classes of receptors is discussed.
机译:尽管有大量证据表明促红细胞生成素(EPO)受体具有信号传导作用。通过结合EPO将其二聚化开始时,以前已经报道过EPO受体(sEPOR)的可溶性胞外域在EPO存在时不会二聚化,并且只能与EPO形成​​1:1的复合物。现在,我们已经通过光散射,沉降平衡和滴定量热法明确地表明,两个sEPOR分子可以与一个EPO单体结合,但是第二个sEPOR的结合力比第一个sEPOR弱1000倍。由于第二次结合相互作用非常弱(K-d约等于1μM),因此2:1 sEPOR。 EPO配合物在色谱过程中很容易解离(形成先前报道的1:1配合物),无法以纯净形式分离。沉降平衡数据的全局分析使我们能够确定结合常数,并且与其中EPO具有sEPOR的两个独立结合位点但不能排除反合作或顺序结合模型的模型一致。还研究了EPO和/或sEPOR的糖基化对结合亲和力的影响。滴定量热法与沉淀数据一致,表明较弱的结合位点具有更大的负ΔH。这些结果与EPO与膜结合受体的结合以及明显的高亲和力和低亲和力现象之间的关系类别的受体进行了讨论。

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