首页> 外文期刊>Journal of venomous animals and toxins >Purification procedure for the isolation of a P-I metalloprotease and an acidic phospholipase A 2 from Bothrops atrox snake venom
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Purification procedure for the isolation of a P-I metalloprotease and an acidic phospholipase A 2 from Bothrops atrox snake venom

机译:从Bothrops atrox蛇毒中分离P-1金属蛋白酶和酸性磷脂酶A 2的纯化程序

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Snake venoms are complex mixtures of inorganic and organic components, mainly proteins and peptides. Standardization of methods for isolating bioactive molecules from snake venoms is extremely difficult due to the complex and highly variable composition of venoms, which can be influenced by factors such as age and geographic location of the specimen. Therefore, this study aimed to standardize a simple purification methodology for obtaining a P-I class metalloprotease (MP)?and an acidic phospholipase A2 (PLA2) from Bothrops atrox venom, and biochemically characterize these molecules to enable future functional studies. To obtain the toxins of interest, a method has been standardized using consecutive isolation steps. The purity level of the molecules was confirmed by RP-HPLC and SDS-PAGE. The enzymes were characterized by determining their molecular masses, isoelectric points, specific functional activity and partial amino acid sequencing. The metalloprotease presented molecular mass of 22.9?kDa and pI 7.4, with hemorrhagic and fibrin(ogen)olytic activities, and its partial amino acid sequence revealed high similarity with other P-I class metalloproteases. These results suggest that the isolated metalloprotease is Batroxase, a P-I metalloprotease previously described by our research group. The phospholipase?A2 showed molecular mass of 13.7?kDa and pI 6.5, with high phospholipase activity and similarity to other acidic PLA2s from snake venoms. These data suggest that the acidic PLA2 is a novel enzyme from B. atrox venom, being denominated BatroxPLA2. The present study successfully standardized a simple methodology to isolate the metalloprotease Batroxase and the acidic PLA2 BatroxPLA2 from the venom of B. atrox, consisting mainly of classical chromatographic processes. These two enzymes will be used in future studies to evaluate their effects on the complement system and the inflammatory process, in addition to the thrombolytic potential of the metalloprotease.
机译:蛇毒是无机和有机成分(主要是蛋白质和肽)的复杂混合物。由于蛇毒的成分复杂且变化多端,因此从蛇毒中分离生物活性分子的方法的标准化非常困难,这可能会受到诸如标本的年龄和地理位置等因素的影响。因此,本研究旨在标准化一种简单的纯化方法,以从Bothrops atrox毒液中获得P-1类金属蛋白酶(MP)?和酸性磷脂酶A2(PLA2),并对这些分子进行生化表征,以进行未来的功能研究。为了获得目的毒素,已经使用连续的分离步骤对方法进行了标准化。分子的纯度水平通过RP-HPLC和SDS-PAGE确认。通过确定其分子量,等电点,比功能活性和部分氨基酸测序来表征酶。金属蛋白酶的分子量为22.9kkDa,pI 7.4,具有出血和纤维蛋白原水解活性,其部分氨基酸序列与其他P-1类金属蛋白酶具有高度相似性。这些结果表明,分离出的金属蛋白酶是Batroxase,即我们研究小组先前描述的一种P-I金属蛋白酶。磷脂酶αA2的分子量为13.7kkDa,pI 6.5,具有很高的磷脂酶活性,与蛇毒中其他酸性PLA2相似。这些数据表明酸性PLA2是一种来自B. atrox毒液的新型酶,命名为BatroxPLA2。本研究成功地标准化了一种简单的方法,该方法可从B. atrox的毒液中分离出金属蛋白酶Batroxase和酸性PLA2 BatroxPLA2,其主要成分为经典色谱过程。除了金属蛋白酶的溶栓潜力外,这两种酶还将用于未来的研究中,以评估它们对补体系统和炎症过程的影响。

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