竞争显色法研究尿激酶型纤溶酶原激活物与其受体的功能相互作用。

P Rettenberger, O Wilhelm, H Oi, U H Weidle, L Goretzki, M Koppitz, F Lottspeich, B König, U Pessara, M D Kramer
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引用次数: 14

摘要

尿激酶型纤溶酶原激活剂(uPA)将纤溶酶原转化为纤溶酶,从而降解各种细胞外基质成分。uPA通过结合特定受体(uPAR,也称为CD87)聚焦到细胞表面。upar结合的uPA介导多种生物过程中的细胞周蛋白水解,如细胞迁移、组织重塑和肿瘤侵袭。我们开发了一种竞争性的基于微滴板的显色试验,可以分析uPA/uPAR相互作用。用中国仓鼠卵巢(CHO)细胞表达的重组uPAR包被板。将蛋白水解活性uPA (HMW-uPA)添加到微滴板附着的uPAR中。受体结合的uPA的量是通过加入纤溶酶原间接确定的,纤溶酶原被纤溶酶激活,随后是纤溶酶特异性显色底物的裂解。干扰HMW-uPA与uPAR结合的物质减少了纤溶酶的产生,这可以通过切割显色底物的减少来证明。该实验分别分析了多种蛋白和多肽对uPA/uPAR相互作用的抑制能力:i)在CHO细胞、酵母或大肠杆菌中表达的uPAR和uPAR变体,ii)人uPA或酵母重组pro-uPA的氨基末端片段(ATF), iii)从uPA的uPAR结合区序列中提取的合成肽,iv)针对uPAR的抗体。该分析可能有助于识别uPA和uPAR类似物或拮抗剂,有效阻断uPA/uPAR相互作用。
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A competitive chromogenic assay to study the functional interaction of urokinase-type plasminogen activator with its receptor.

Urokinase-type plasminogen activator (uPA) converts plasminogen to plasmin which degrades various extracellular matrix components. uPA is focused to the cell surface via binding to a specific receptor (uPAR, also termed CD87). uPAR-bound uPA mediates pericellular proteolysis in a variety of biological processes, e.g. cell migration, tissue remodeling and tumor invasion. We have developed a competitive microtiter plate-based chromogenic assay which allows the analysis of uPA/uPAR interaction. The plates are coated with recombinant uPAR expressed in Chinese hamster ovary (CHO) cells. Proteolytically active uPA (HMW-uPA) is added to the microtiter plate-attached uPAR. The amount of receptor-bound uPA is then determined indirectly via addition of plasminogen, which is activated to plasmin, followed by cleavage of a plasmin-specific chromogenic substrate. Substances interfering with binding of HMW-uPA to uPAR diminish the generation of plasmin, as indicated by a reduction of cleaved chromogenic substrate. This assay was used to analyze the inhibitory capacity of a variety of proteins and peptides, respectively, on the uPA/uPAR interaction: i) uPAR and uPAR-variants expressed in CHO cells, yeast or E. coli, ii) the aminoterminal fragment (ATF) of human uPA or yeast recombinant pro-uPA, iii) synthetic peptides derived from the sequence of the uPAR-binding region of uPA, and iv) antibodies directed against uPAR. This assay may be helpful in identifying uPA and uPAR analogues or antagonists which efficiently block uPA/uPAR interaction.

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