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白眉蝮蛇毒金属蛋白酶白眉溶素-a的细胞毒性、溶栓活性和致水肿活性

Cytotoxic, thrombolytic and edematogenic activities of leucurolysin-a, a metalloproteinase from Bothrops leucurus snake venom.

作者信息

Gremski L H, Chaim O M, Paludo K S, Sade Y B, Otuki M F, Richardson M, Gremski W, Sanchez E F, Veiga S S

机构信息

Medical Clinic Discipline, Department of Medicine, UNIFESP, São Paulo, SP, Brazil.

出版信息

Toxicon. 2007 Jul;50(1):120-34. doi: 10.1016/j.toxicon.2007.03.002. Epub 2007 Mar 14.

DOI:10.1016/j.toxicon.2007.03.002
PMID:17482228
Abstract

Leucurolysin-a (leuc-a), a 23 kDa non-hemorrhagic metalloproteinase, is found in venom of the viper Bothrops leucurus. Here, we examine the biological consequences of leuc-a, including thrombolytic activity, direct effects on endothelial cells in culture and edematogenic activity in vivo. We demonstrate fibrinolytic activity of leuc-a, in which the protease specifically degrades alpha, beta, and gamma-gamma chains. While not causing hemorrhaging, leuc-a does cause thrombolytic activities in whole blood clots. Endothelial cells are highly resistant to leuc-a in culture. Cell viability suffered only when cells were exposed to large quantities of the protease. Nevertheless, leuc-a induces changes in cell morphology. The impact of leuc-a on cell adhesion was confirmed by an adhesion assay, in which cell adhesion to fibronectin decreased due to leuc-a. This mild cellular impact is unlike that of crude venom, where lower concentrations triggered cell death and a greater reduction in cell adhesion. Also, leuc-a increased microvessel permeability with marked edema in mice peritoneum and foot pads. These effects are similar to those of other P-I class SVPMs. These in vivo effects were weaker when crude venom was tested. In conclusion, albeit not showing significant hemorrhagic activity, leuc-a can induce a prominent edema which appears to be significant in the local effects observed after B. leucurus venom accidents.

摘要

白纹蝰溶素-a(leuc-a)是一种23 kDa的非出血性金属蛋白酶,存在于白纹蝰蛇的毒液中。在此,我们研究了leuc-a的生物学效应,包括溶栓活性、对培养内皮细胞的直接作用以及体内致水肿活性。我们证明了leuc-a的纤溶活性,其中该蛋白酶特异性降解α、β和γ-γ链。虽然不会导致出血,但leuc-a确实会在全血凝块中引起溶栓活性。内皮细胞在培养中对leuc-a具有高度抗性。只有当细胞暴露于大量蛋白酶时,细胞活力才会受到影响。然而,leuc-a会诱导细胞形态发生变化。通过黏附试验证实了leuc-a对细胞黏附的影响,其中由于leuc-a,细胞对纤连蛋白的黏附减少。这种对细胞的轻微影响不同于粗毒液,粗毒液在较低浓度时会引发细胞死亡并使细胞黏附减少得更多。此外,leuc-a增加了微血管通透性,在小鼠腹膜和脚垫中出现明显水肿。这些效应与其他P-I类蛇毒金属蛋白酶的效应相似。当测试粗毒液时,这些体内效应较弱。总之,尽管leuc-a未表现出显著的出血活性,但它可诱导明显的水肿,这在白纹蝰蛇毒液中毒事故后观察到的局部效应中似乎具有重要意义。

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