Souza C T, Moura M B, Magalhaes A, Heneine L G, Olortegui C C, Diniz C R, Sanchez E F
Centro de Pesquisa e Desenvolvimento, Fundação Ezequiel Dias, 30510-010 Belo Horizonte, MG, Brazil.
Comp Biochem Physiol B Biochem Mol Biol. 2001 Sep;130(2):155-68. doi: 10.1016/s1096-4959(01)00421-3.
Mutalysin II is a 22.5-kDa zinc endopeptidase isolated from Lachesis muta muta snake venom. In order to determine whether the inhibitors human alpha2-macroglobulin (alpha2-M) and rabbit antibody to mutalysin II share a common mechanism, we have investigated the inhibition of mutalysin II by these two different glycoproteins. The proteolytic activity of mutalysin II with dimethylcasein as substrate was completely inhibited by human alpha2-M and by a purified rabbit antibody to mutalysin II. The protection of fibrin(ogen) digestion by alpha2-M was slightly better than the protection offered by the antibody. In addition, the purified antibody reacted only with the metalloproteinase in bushmaster venom, as demonstrated by immunodiffusion. SDS-PAGE analysis of reduced samples showed that the interaction of mutalysin II with alpha2-M resulted in the formation of high molecular complex ( approximately 180000) and M(r) 90000 fragments generated by the venom enzyme. Also, fragments at 85 and 23 kDa were detected under non-reducing conditions after incubation of rabbit immunoglobulin with enzyme. Proteolysis of dimethylcasein as substrate revealed that the stoichiometry of inhibition was 1.0 mol of human alpha2-M and 1.5 mol of rabbit IgG antimutalysin II per mole of enzyme. Furthermore, dimethylcasein hydrolysis indicated that several viperid snake venoms, including Bothrops atrox, B. alternatus and Trimeresurus flavoviridis cross-reacted with the specific rabbit antibody to varying degrees.
互溶素II是一种从矛头蝮蛇毒中分离出的22.5 kDa锌内肽酶。为了确定抑制剂人α2-巨球蛋白(α2-M)和抗互溶素II兔抗体是否具有共同机制,我们研究了这两种不同糖蛋白对互溶素II的抑制作用。以二甲基酪蛋白为底物时,人α2-M和纯化的抗互溶素II兔抗体可完全抑制互溶素II的蛋白水解活性。α2-M对纤维蛋白(原)消化的保护作用略优于抗体。此外,免疫扩散表明,纯化的抗体仅与巨蝮蛇毒中的金属蛋白酶发生反应。还原样品的SDS-PAGE分析表明,互溶素II与α2-M相互作用形成了高分子复合物(约180000),以及由蛇毒酶产生的90000 M(r)片段。同样,兔免疫球蛋白与酶孵育后,在非还原条件下检测到85 kDa和23 kDa的片段。以二甲基酪蛋白为底物的蛋白水解表明,抑制的化学计量比为每摩尔酶1.0摩尔人α2-M和1.5摩尔抗互溶素II兔IgG。此外,二甲基酪蛋白水解表明,几种蝰蛇蛇毒,包括巴西矛头蝮、交替矛头蝮和竹叶青,与特异性兔抗体有不同程度的交叉反应。