一种从两种蛇属蛇毒中快速高效纯化凝血酶样酶的新方法

Maurício Aurelio Gomes Heleno, Edda E Newball-Noriega, S. Huancahuire-Vega, R. S. F. Júnior, B. Barraviera
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引用次数: 1

摘要

蛇毒是具有多种药理活性的复杂物质的重要来源。其中丝氨酸蛋白酶(SVSPs)对止血系统有重要作用,影响人或动物血液的血流动力学。蛇属蛇毒富含凝血酶样酶,是svsp的一种,具有很大的药用价值。因此,这项工作的目的是描述一种快速的,只有两步的色谱程序,以执行更快的纯化从交替Bothrops和Bothrops moojeni毒液svsp。结果分离得到了两组丝氨酸蛋白酶BaIII-4 - 8和BmIII-2 - 5,并在变性条件下通过质谱法和SDS-PAGE测定了它们的分子量。从B. alternatus (BaIII-3 - 8)和B. moojeni (BmIII-2 - 5)分离得到的SVTLEs的表观分子质量在30-40 kDa左右,其氨基酸部分序列三联离子与其他Bothrops物种的SVTLEs密切相关。对分离蛋白n端氨基酸残基序列的比对分析显示,分离蛋白与其他SVTLEs具有高度的同源性。这些酶使血浆凝固,并在血液中显示纤维蛋白原溶解活性。这些分离的SVTLEs可以被认为是α-纤维蛋白原酶,主要是因为它们水解Aα链纤维蛋白原。木氏白僵菌SVTLE的活性明显高于分离的白僵菌。这种新的净化替代方法比目前使用的传统方法更快,更经济。更快的纯化和提高提取率可以为这些酶提供新的见解,包括作为新药生产的候选分子。
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A Novel Fast and Efficient Approach to Purify the Thrombin-like Enzyme from Two Bothrops-genus Snake Venoms
: Snake venoms are important sources of complex substances with a variety of pharmacological activities. Among them serine proteinases (SVSPs) have important effects on the hemostatic system influencing the hemodynamic of human or animal blood. Bothrops genus-snake venoms are rich in the thrombin-like enzyme, a type of SVSPs, with great interest to produce medicine. Therefore, the aim of this work was to describe a rapid, only two-step chromatographic-procedure developed to perform a faster purification of SVSPs from Bothrops alternatus and Bothrops moojeni venoms. As a result, two groups of serine proteinases respectively BaIII-4 - 8 and BmIII-2 - 5, were isolated and their molecular masses estimated by mass spectrometry and SDS-PAGE under denaturing conditions. The SVTLEs isolated from B. alternatus (BaIII-3 - 8) and B. moojeni (BmIII-2 - 5) fractions displayed apparent molecular mass around 30-40 kDa which closely relates to SVTLEs from other Bothrops species, as well their amino acid partial sequence triptych ions. Analysis of the alignment of the amino acid residue sequences of the N-terminal of the isolated proteins revealed a high level of identity with other SVTLEs. These enzymes coagulated plasma and showed fibrinogenolytic activity in blood. These SVTLEs isolated can be considered α-fibrinogenase mainly due to the fact that they hydrolyze the Aα chain fibrinogen. B. moojeni SVTLE showed greater activity than those from B. alternatus isolated. This new purification alternative approach developed was faster and more economical than the traditional process currently used. Faster purification and improved extraction yield can provide new insights into these enzymes including the use as a candidate molecule in the production of new drugs.
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