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Isolation from Gloydius blomhoffii siniticus Venom of a Fibrin(ogen)olytic Enzyme Consisting of Two Heterogenous Polypeptides

机译:从中华绒螯蟹蛇毒中分离出由两种异源多肽组成的纤维蛋白(原)水解酶

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Objective: This study was undertaken to isolate a fibrin(ogen)olytic enzyme from the snake venom of Gloydius blomhoffii siniticus and to investigate the enzymatic characteristics and hemorrhagic activity of the isolated enzyme as a potential pharmacopuncture agent. Methods: The fibrinolytic enzyme was isolated by using chromatography, sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and fibrin plate assay. The characteristics of the enzyme were determined by using fibrin plate assay, protein hydrolysis analysis, and hemorrhage assay. Its amino acid composition was determined. Results: The fibrin(ogen)olytic enzyme with the molecular weight of 27 kDa (FE-27kDa) isolated from G. b. siniticus venom consisted of two heterogenous disulfide bond-linked polypeptides with the molecular weights of 15 kDa and 18 kDa. When more than of FE-27kDa was applied on the fibrin plate, fibrinolysis zone was formed as indicating its fibrinolytic activity. The fibrinolytic activity was inhibited completely by phenylmethanesulfonylfluoride (PMSF) and ethylenediaminetetraacetic acid (EDTA) and partially by thiothreitol and cysteine. Metal ions such as and inhibited the fibrinolytic activity completely, but did not. FE-27kDa preferentially hydrolyzed -chain of fibrinogen and slowly hydrolyzed -chain, but did not hydrolyze -chain. High-molecular-weight polypeptides of gelatin were hydrolyzed partially into polypeptides with molecular weights of more than 45 kDa. A dosage of more than of FE-27kDa per mouse was required to induce hemorrhage beneath the skin. Conclusion: FE-27kDa was a serine proteinase consisting of two heterogeneous polypeptides, hydrolyzed fibrin, fibrinogen, and gelatin, and caused hemorrhage beneath the skin of mouse. This study suggests that the potential of FE-27kDa as pharmacopuncture agent should be limited due to low fibrinolytic activity and a possible side effect of hemorrhage.
机译:目的:本研究旨在从蛇舌草蛇毒中分离出一种纤维蛋白(原)水解酶,并研究其作为潜在的药物针刺剂的酶学特性和止血活性。方法:采用色谱,十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,血纤蛋白板法分离血纤蛋白。通过使用纤维蛋白平板测定,蛋白质水解分析和出血测定来确定酶的特性。测定其氨基酸组成。结果:从G.b.中分离出分子量为27kDa的纤维蛋白(原)水解酶(FE-27kDa)。鼻窦蛇毒由两个分子量分别为15 kDa和18 kDa的异质二硫键连接的多肽组成。当在纤维蛋白板上施用超过FE-27kDa的蛋白时,形成纤维蛋白溶解区,表明其纤维蛋白溶解活性。纤溶活性完全被苯基甲磺酰氟(PMSF)和乙二胺四乙酸(EDTA)抑制,部分被硫苏糖醇和半胱氨酸抑制。金属离子例如和完全抑制纤溶活性,但没有抑制。 FE-27kDa优先水解纤维蛋白原的链,并缓慢水解,但不水解。明胶的高分子量多肽被部分水解为分子量大于45 kDa的多肽。每只小鼠需要大于FE-27kDa的剂量才能引起皮肤下出血。结论:FE-27kDa是一种丝氨酸蛋白酶,由两种异质多肽(水解的纤维蛋白,纤维蛋白原和明胶)组成,并引起小鼠皮肤下出血。这项研究表明,由于纤溶活性低和出血的可能副作用,应限制FE-27kDa作为药物穿刺剂的潜力。

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