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促红细胞生成素(EPO)受体的共同和独特决定因素对于结合EPO和EPO模拟肽很重要。

Shared and unique determinants of the erythropoietin (EPO) receptor are important for binding EPO and EPO mimetic peptide.

作者信息

Middleton S A, Barbone F P, Johnson D L, Thurmond R L, You Y, McMahon F J, Jin R, Livnah O, Tullai J, Farrell F X, Goldsmith M A, Wilson I A, Jolliffe L K

机构信息

R. W. Johnson Pharmaceutical Research Institute, Raritan, New Jersey 08869, USA.

出版信息

J Biol Chem. 1999 May 14;274(20):14163-9. doi: 10.1074/jbc.274.20.14163.

Abstract

We have shown previously that Phe93 in the extracellular domain of the erythropoietin (EPO) receptor (EPOR) is crucial for binding EPO. Substitution of Phe93 with alanine resulted in a dramatic decrease in EPO binding to the Escherichia coli-expressed extracellular domain of the EPOR (EPO-binding protein or EBP) and no detectable binding to full-length mutant receptor expressed in COS cells. Remarkably, Phe93 forms extensive contacts with a peptide ligand in the crystal structure of the EBP bound to an EPO-mimetic peptide (EMP1), suggesting that Phe93 is also important for EMP1 binding. We used alanine substitution of EBP residues that contact EMP1 in the crystal structure to investigate the function of these residues in both EMP1 and EPO binding. The three largest hydrophobic contacts at Phe93, Met150, and Phe205 and a hydrogen bonding interaction at Thr151 were examined. Our results indicate that Phe93 and Phe205 are important for both EPO and EMP1 binding, Met150 is not important for EPO binding but is critical for EMP1 binding, and Thr151 is not important for binding either ligand. Thus, Phe93 and Phe205 are important binding determinants for both EPO and EMP1, even though these ligands share no sequence or structural homology, suggesting that these residues may represent a minimum epitope on the EPOR for productive ligand binding.

摘要

我们之前已经表明,促红细胞生成素(EPO)受体(EPOR)胞外域中的苯丙氨酸93(Phe93)对于结合EPO至关重要。将Phe93替换为丙氨酸会导致EPO与大肠杆菌表达的EPOR胞外域(EPO结合蛋白或EBP)的结合显著减少,并且在COS细胞中表达的全长突变受体上未检测到结合。值得注意的是,在与EPO模拟肽(EMP1)结合的EBP晶体结构中,Phe93与一种肽配体形成了广泛的接触,这表明Phe93对于EMP1结合也很重要。我们利用晶体结构中与EMP1接触的EBP残基的丙氨酸替换来研究这些残基在EMP1和EPO结合中的功能。研究了Phe93、Met150和Phe205处的三个最大疏水接触以及Thr151处的氢键相互作用。我们的结果表明,Phe93和Phe205对于EPO和EMP1结合都很重要,Met150对于EPO结合不重要,但对于EMP1结合至关重要,而Thr151对于两种配体的结合都不重要。因此,Phe93和Phe205是EPO和EMP1的重要结合决定因素,尽管这些配体没有序列或结构同源性,这表明这些残基可能代表了EPOR上用于有效配体结合的最小表位。

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