Van Leuven F, Marynen P, Cassiman J J, Van den Berghe H
Biochem J. 1982 May 1;203(2):405-11. doi: 10.1042/bj2030405.
The unique steric type of inhibition of endopeptidases by human alpha 2-macroglobulin (alpha 2-M) and the inactivation of the latter by methylamine were examined in relation to the internal thioesters in alpha 2M. The present results confirm our previous findings that disruption of the internal thioesters, is not in itself sufficient to cause the conformational change of alpha 2M typical of alpha 2-M-proteinase complexes; the electrophoretically slow form of alpha 2M with [14C]methylamine incorporated was isolated. Moreover, this group is stabilized by derivatization of the exposed cysteine thiol groups. Cyanylation with 2,4-dinitrophenyl thiocyanate during the methylamine reaction was the most effective procedure, yielding essentially only slow-form alpha 2M. Other thiol-specific reagents were less effective. When allowed to react with trypsin the cyanylated derivative (slow-form alpha 2M with thioesters broken) produced anomalous complexes; only half the expected amount of trypsin was bound, whereas the complexes were fully inhibited by soya-bean trypsin inhibitor and were proteolytically active. Despite this, the anomalous complexes were recognized by two highly specific probes: the fibroblast alpha 2M-complex receptor and the monoclonal antibody (F2B2) directed against the receptor-recognition site on alpha 2M complexes. The results show that the internal thioesters in alpha 2M are necessary for the conformational change producing sterically inhibited endoproteinase complexes, but do not participate as such in receptor-mediated endocytosis of these complexes.
研究了人α2-巨球蛋白(α2-M)对内肽酶的独特空间抑制类型以及甲胺对其的失活作用与α2M内部硫酯的关系。目前的结果证实了我们之前的发现,即内部硫酯的破坏本身不足以引起α2-M-蛋白酶复合物典型的α2M构象变化;分离出了掺入[14C]甲胺的电泳慢型α2M。此外,该基团通过暴露的半胱氨酸硫醇基团的衍生化而稳定。在甲胺反应过程中用2,4-二硝基苯基硫氰酸盐进行氰化是最有效的方法,基本上只产生慢型α2M。其他硫醇特异性试剂效果较差。当与胰蛋白酶反应时,氰化衍生物(硫酯断裂的慢型α2M)产生异常复合物;仅结合了预期量一半的胰蛋白酶,而该复合物被大豆胰蛋白酶抑制剂完全抑制且具有蛋白水解活性。尽管如此,这些异常复合物仍被两种高度特异性的探针识别:成纤维细胞α2M复合物受体和针对α2M复合物上受体识别位点的单克隆抗体(F2B2)。结果表明,α2M中的内部硫酯对于产生空间抑制性内蛋白酶复合物的构象变化是必需的,但本身并不参与这些复合物的受体介导的内吞作用。