大鼠PDGF受体β外结构域的表达产生低亲和力配体拮抗剂。

B Herren, M Pech
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引用次数: 4

摘要

血小板衍生生长因子(PDGF)控制间充质细胞的迁移和增殖,被认为参与不同疾病的病理生理,如动脉硬化和肿瘤发生。为了研究PDGF在这些疾病的大鼠模型中的作用,需要足够量的PDGF拮抗剂。为此,我们利用杆状病毒载体在昆虫细胞中表达了大鼠PDGF受体β (PDGFR β)的细胞外结构域(ectodomain)。一个亲水性八肽被添加到受体外结构域的n端,跟随它与特异性抗flag抗体的表达。FLAG标记也被用来设计一个快速的两步纯化方案。经Scatchard分析,纯化的flag标记的大鼠PDGFR β外域与未标记的PDGF-BB具有相同的亲和力。然而,在溶液中,flag标记的PDGFR β外结构域在高亲和力拮抗剂的浓度下,不会竞争PDGF-BB与全长细胞受体的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression of a rat PDGF receptor beta ectodomain generates a low affinity ligand antagonist.

Platelet-derived growth factor (PDGF) controls migration and proliferation of mesenchymal cells and is thought to be involved in the pathophysiology of different diseases such as arteriosclerosis and tumorigenesis. In order to investigate the role of PDGF in rat models for such diseases, sufficient amounts of PDGF antagonists are needed. For this purpose we expressed the extracellular domain (ectodomain) of the rat PDGF receptor beta (PDGFR beta) in insect cells using a baculovirus vector. A hydrophilic octapeptide was added onto the N-terminus of the receptor ectodomain to follow its expression with specific anti-FLAG antibodies. The FLAG tag was also utilized to design a rapid two-step purification protocol. Purified FLAG-tagged rat PDGFR beta ectodomain had an affinity to PDGF-BB identical to the untagged ectodomain as determined by Scatchard analysis. FLAG-tagged PDGFR beta ectodomain in solution, however, did not compete for PDGF-BB binding to full length cellular receptors at concentrations expected for an high affinity antagonist.

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