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通过等电聚焦研究尿激酶与α2-巨球蛋白的相互作用。非特异性可解离结合的证据。

Interaction of urokinase with alpha2-macroglobulin investigated by isoelectric focusing. Evidence for non-specific dissociable binding.

作者信息

Vahtera E, Hamberg U

出版信息

Biochem J. 1978 Jun 1;171(3):767-70. doi: 10.1042/bj1710767.

Abstract

The binding of urokinase to human alpha2M (alpha2-macroglobulin) was investigated in comparison with the formation of the equimolar trypsin-alpha2M complex. Experiments were performed by molecular-sieving on Sephadex G-200, subunit conversion by sodium dodecyl sulphate-polyacrylamide-gel electrophoresis after reduction and isoelectric focusing in linear sucrose gradients with ampholytes pH 3.5-10.0. Urokinase activity was determined with alpha-N-acetyl-L-lysine methyl ester and by activation of plasminogen on unheated fibrin plates. alpha2M was determined by single radial immunodiffusion. alpha2M was capable of binding some urokinase by a non-specific type of attachment that could be disrupted by isoelectric focusing but not by gel filtration. The pI of the undissociated trypsin-alpha2M complex was 6.0, and differed from that of the pure alpha2M (5.2-5.4). Likewise the pI of the immunoreactive alpha2M was 5.2 after exposure to urokinase, whereas the dissociated urokinase focused at pI 10.2. This indicated lack of true inhibitor-complex formation, which was also sustained by total absence of subunit conversion. The results are in agreement with our previous findings with pancreatic and urinary kallikreins.

摘要

与等摩尔胰蛋白酶-α2M复合物的形成相比,研究了尿激酶与人α2M(α2-巨球蛋白)的结合。实验通过在Sephadex G-200上进行分子筛、还原后用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳进行亚基转化以及在pH 3.5 - 10.0两性电解质的线性蔗糖梯度中进行等电聚焦来进行。尿激酶活性用α-N-乙酰-L-赖氨酸甲酯测定,并通过在未加热的纤维蛋白平板上激活纤溶酶原来测定。α2M通过单向放射免疫扩散测定。α2M能够通过一种非特异性的附着方式结合一些尿激酶,这种附着方式可通过等电聚焦破坏,但不能通过凝胶过滤破坏。未解离的胰蛋白酶-α2M复合物的pI为6.0,与纯α2M的pI(5.2 - 5.4)不同。同样,暴露于尿激酶后,免疫反应性α2M的pI为5.2,而解离的尿激酶聚焦在pI 10.2。这表明缺乏真正的抑制剂 - 复合物形成,亚基转化完全不存在也支持了这一点。这些结果与我们之前关于胰腺和尿激肽释放酶的研究结果一致。

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本文引用的文献

8
Studies on plasminogen activators. 3. Assay of fibrinolytic activator enzymes from plasma und urine.
Acta Chem Scand. 1968;22(5):1452-60. doi: 10.3891/acta.chem.scand.22-1452.

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