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The four cysteine residues in the second extracellular loop of the human adenosine A2B receptor: role in ligand binding and receptor function.

机译:人腺苷A2B受体第二个细胞外环中的四个半胱氨酸残基:在配体结合和受体功能中的作用。

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The adenosine A(2B) receptor is of considerable interest as a new drug target for the treatment of asthma, inflammatory diseases, pain, and cancer. In the present study we investigated the role of the cysteine residues in the extracellular loop 2 (ECL2) of the receptor, which is particularly cysteine-rich, by a combination of mutagenesis, molecular modeling, chemical and pharmacological experiments. Pretreatment of CHO cells recombinantly expressing the human A(2B) receptor with dithiothreitol led to a 74-fold increase in the EC(50) value of the agonist NECA in cyclic AMP accumulation. In the C78(3.25)S and the C171(45.50)S mutant high-affinity binding of the A(2B) antagonist radioligand [(3)H]PSB-603 was abolished and agonists were virtually inactive in cAMP assays. This indicates that the C3.25-C45.50 disulfide bond, which is highly conserved in GPCRs, is also important for binding and function of A(2B) receptors. In contrast, the C166(45.45)S and the C167(45.46)S mutant as well as the C166(45.45)S-C167(45.46)S double mutant behaved like the wild-type receptor, while in the C154(45.33)S mutant significant, although more subtle effects on cAMP accumulation were observed - decrease (BAY60-6583) or increase (NECA) - depending on the structure of the investigated agonist. In contrast to the X-ray structure of the closely related A(2A) receptor, which showed four disulfide bonds, the present data indicate that in the A(2B) receptor only the C3.25-C45.50 disulfide bond is essential for ligand binding and receptor activation. Thus, the cysteine residues in the ECL2 of the A(2B) receptor not involved in stabilization of the receptor structure may have other functions.
机译:腺苷A(2B)受体作为治疗哮喘,炎性疾病,疼痛和癌症的新药物靶标引起了广泛关注。在本研究中,我们通过诱变,分子建模,化学和药理实验相结合,研究了半胱氨酸残基在受体的细胞外环2(ECL2)中的作用,尤其是富含半胱氨酸的受体。用二硫苏糖醇对重组表达人A(2B)受体的CHO细胞进行预处理,导致环状AMP积累中激动剂NECA的EC(50)值增加74倍。在C78(3.25)S和C171(45.50)S突变体中,A(2B)拮抗剂放射性配体[(3)H] PSB-603的高亲和力结合被取消,激动剂在cAMP分析中几乎没有活性。这表明,在GPCR中高度保守的C3.25-C45.50二硫键对于A(2B)受体的结合和功能也很重要。相比之下,C166(45.45)S和C167(45.46)S突变体以及C166(45.45)S-C167(45.46)S双突变体的行为类似于野生型受体,而在C154(45.33)S中突变体是显着的,尽管观察到了对cAMP积累的更微妙的影响-减少(BAY60-6583)或增加(NECA)-取决于所研究激动剂的结构。与紧密相关的A(2A)受体的X射线结构显示四个二硫键相反,本数据表明,在A(2B)受体中,只有C3.25-C45.50二硫键对于配体结合和受体活化。因此,A(2B)受体的ECL2中不参与稳定受体结构的半胱氨酸残基可能具有其他功能。

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