Laboratório de Toxinologia Aplicada, Center of Toxins, Immune-Response and Cell Signalig, CeTICS, Instituto Butantan, São Paulo 05503-900, SP, Brazil.
Department of Biochemistry, Escola Paulista de Medicina, Federal University of Sao Paulo, Sao Paulo 04023-901, SP, Brazil.
Toxins (Basel). 2021 Oct 28;13(11):764. doi: 10.3390/toxins13110764.
Hemorrhage induced by snake venom metalloproteinases (SVMPs) is a complex phenomenon that involves capillary disruption and blood extravasation. HF3 (hemorrhagic factor 3) is an extremely hemorrhagic SVMP of venom. Studies using proteomic approaches revealed targets of HF3 among intracellular and extracellular proteins. However, the role of the cleavage of plasma proteins in the context of the hemorrhage remains not fully understood. The main goal of this study was to analyze the degradome of HF3 in human plasma. For this purpose, approaches for the depletion of the most abundant proteins, and for the enrichment of low abundant proteins of human plasma, were used to minimize the dynamic range of protein concentration, in order to assess the proteolytic activity of HF3 on a wide spectrum of proteins, and to detect the degradation products using mass spectrometry-based untargeted peptidomics. The results revealed the hydrolysis products generated by HF3 and allowed the identification of cleavage sites. A total of 61 plasma proteins were identified as cleaved by HF3. Some of these proteins corroborate previous studies, and others are new HF3 targets, including proteins of the coagulation cascade, of the complement system, proteins acting on the modulation of inflammation, and plasma proteinase inhibitors. Overall, the data indicate that HF3 escapes inhibition and sculpts the plasma proteome by degrading key proteins and generating peptides that may act synergistically in the hemorrhagic process.
蛇毒金属蛋白酶(SVMPs)引起的出血是一种复杂的现象,涉及毛细血管破裂和血液渗出。HF3(出血因子 3)是一种极其出血的毒液 SVMP。使用蛋白质组学方法的研究揭示了 HF3 在细胞内和细胞外蛋白质中的靶标。然而,在出血背景下,血浆蛋白的切割作用的作用仍不完全清楚。本研究的主要目的是分析 HF3 在人血浆中的降解组。为此,使用了去除最丰富蛋白质和富集人血浆中低丰度蛋白质的方法,以最小化蛋白质浓度的动态范围,从而评估 HF3 对广泛谱蛋白质的蛋白水解活性,并使用基于质谱的非靶向肽组学检测降解产物。结果揭示了 HF3 产生的水解产物,并允许鉴定切割位点。共有 61 种血浆蛋白被 HF3 切割。其中一些蛋白质与先前的研究一致,而另一些则是 HF3 的新靶标,包括凝血级联、补体系统、调节炎症的蛋白质和血浆蛋白酶抑制剂中的蛋白质。总的来说,这些数据表明,HF3 通过降解关键蛋白质并产生可能在出血过程中协同作用的肽,逃避抑制并塑造血浆蛋白质组。