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Liquid chromatographic nanofractionation with parallel mass spectrometric detection for the screening of plasmin inhibitors and (metallo)proteinases in snake venoms

机译:液相色谱-纳米级分离-平行质谱检测筛查蛇毒中的纤溶酶抑制剂和(金属)蛋白酶

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摘要

To better understand envenoming and to facilitate the development of new therapies for snakebite victims, rapid, sensitive, and robust methods for assessing the toxicity of individual venom proteins are required. Metalloproteinases comprise a major protein family responsible for many aspects of venom-induced haemotoxicity including coagulopathy, one of the most devastating effects of snake envenomation, and is characterized by fibrinogen depletion. Snake venoms are also known to contain anti-fibrinolytic agents with therapeutic potential, which makes them a good source of new plasmin inhibitors. The protease plasmin degrades fibrin clots, and changes in its activity can lead to life-threatening levels of fibrinolysis. Here, we present a methodology for the screening of plasmin inhibitors in snake venoms and the simultaneous assessment of general venom protease activity. Venom is first chromatographically separated followed by column effluent collection onto a 384-well plate using nanofractionation. Via a post-column split, mass spectrometry (MS) analysis of the effluent is performed in parallel. The nanofractionated venoms are exposed to a plasmin bioassay, and the resulting bioassay activity chromatograms are correlated to the MS data. To study observed proteolytic activity of venoms in more detail, venom fractions were exposed to variants of the plasmin bioassay in which the assay mixture was enriched with zinc or calcium ions, or the chelating agents EDTA or 1,10-phenanthroline were added. The plasmin activity screening system was applied to snake venoms and successfully detected compounds exhibiting antiplasmin (anti-fibrinolytic) activities in the venom of Daboia russelii, and metal-dependent proteases in the venom of Crotalus basiliscus. >Graphical abstract
机译:为了更好地理解毒液并促进针对蛇咬受害者的新疗法的发展,需要一种快速,灵敏且健壮的方法来评估单个毒液蛋白的毒性。金属蛋白酶包含一个主要的蛋白家族,负责毒液诱导的血液毒性的许多方面,包括凝血病,这是蛇毒化最破坏性的作用之一,其特征是纤维蛋白原的消耗。还已知蛇毒中含有具有治疗潜力的抗纤维蛋白溶解剂,这使其成为新型纤溶酶抑制剂的良好来源。蛋白酶纤溶酶降解纤维蛋白凝块,其活性变化可导致威胁生命的纤维蛋白溶解水平。在这里,我们提出了一种方法来筛选蛇毒中的纤溶酶抑制剂,并同时评估一般蛇毒蛋白酶的活性。首先进行色谱分离,分离毒液,然后使用纳米分离技术将柱流出物收集到384孔板上。通过柱后分离,对流出物进行质谱(MS)分析并行进行。将纳米级毒液暴露于纤溶酶生物测定,并将所得的生物测定活性色谱图与MS数据相关。为了更详细地研究观察到的毒液的蛋白水解活性,将毒液级分暴露于纤溶酶生物测定的变体中,在该变体中,测定混合物中富含锌或钙离子,或者添加了螯合剂EDTA或1,10-菲咯啉。纤溶酶活性筛选系统应用于蛇毒,并成功检测到在罗氏沼虾的毒液中具有抗纤溶酶(抗纤维蛋白溶解)活性的化合物以及在巴西鳄的毒液中具有金属依赖性蛋白酶的化合物。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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