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预测与白细胞介素-5受体复合物结合的白细胞介素-5结构域的描绘。

Delineation of IL-5 domains predicted to engage the IL-5 receptor complex.

作者信息

Dickason R R, Huston M M, Huston D P

机构信息

Department of Microbiology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Immunol. 1996 Feb 1;156(3):1030-7.

PMID:8557976
Abstract

IL-5 is an interdigitating homodimeric glycoprotein and a member of the helical bundle family of cytokines. IL-5 is a potent activator of eosinophils and a specific promoter of their differentiation. This activity has implicated IL-5 in the pathogenesis of asthma and allergic disease. A detailed understanding of IL-5 structure and function is required to develop immunomodulators of IL-5-mediated inflammatory responses. We generated a panel of neutralizing anti-IL-5 mAbs which were used to map functional domains on IL-5. In addition, the nucleotide sequences for human IL-5, murine IL-5, rat IL-5, and eight human/murine IL-5 chimeras were engineered and expressed in COS-7 cells. These recombinant cytokines and mAbs were used in TF-1 bioassays to identify five functional epitopes on the tertiary structure of IL-5. Residues responsible for the species-specific activity of human IL-5 were identified with the murine BCL1 bioassay. One set of epitopes cluster around the helix A-loop 2 region, which is predicted to engage the IL-5 receptor beta-chain. The second set of epitopes as well as the species specificity domain cluster around the loop 3-helix D region, which is predicted to engage the IL-5 receptor alpha-chain. Together, these analyses target the A/D helical face of IL-5 as the region involved in receptor engagement.

摘要

白细胞介素-5(IL-5)是一种相互交叉的同型二聚体糖蛋白,属于细胞因子螺旋束家族成员。IL-5是嗜酸性粒细胞的强效激活剂及其分化的特异性促进因子。这种活性使IL-5与哮喘和过敏性疾病的发病机制相关。为了开发IL-5介导的炎症反应的免疫调节剂,需要详细了解IL-5的结构和功能。我们制备了一组中和性抗IL-5单克隆抗体(mAb),用于绘制IL-5上的功能域。此外,构建了人IL-5、鼠IL-5、大鼠IL-5以及8种人/鼠IL-5嵌合体的核苷酸序列,并在COS-7细胞中表达。这些重组细胞因子和单克隆抗体用于TF-1生物测定,以鉴定IL-5三级结构上的5个功能表位。用人IL-5物种特异性活性相关的残基通过鼠BCL1生物测定来鉴定。一组表位聚集在螺旋A-环2区域周围,预计该区域与IL-5受体β链结合。第二组表位以及物种特异性结构域聚集在环3-螺旋D区域周围,预计该区域与IL-5受体α链结合。总之,这些分析将IL-5的A/D螺旋面作为参与受体结合的区域。

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