首页> 外文期刊>Journal of proteomics >High resolution analysis of snake venom metalloproteinase (SVMP) peptide bond cleavage specificity using proteome based peptide libraries and mass spectrometry.
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High resolution analysis of snake venom metalloproteinase (SVMP) peptide bond cleavage specificity using proteome based peptide libraries and mass spectrometry.

机译:使用基于蛋白质组的肽库和质谱,对蛇毒金属蛋白酶(SVMP)肽键裂解特异性进行高分辨率分析。

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摘要

Both serine and metalloproteinases have been shown to play the role of toxins in the venoms of many snakes. Determination of the natural protein substrates of these toxins is an important feature in the toxinological characterization of these proteinases. Furthermore, characterization of their peptide bond specificity is of value for understanding active site preference of the proteinase associated with effective proteolysis as well as of use in the design of peptide substrates and inhibitor lead compounds. Typically the determination of peptide bond cleavage specificity of snake venom serine proteinases (SVSPs) and snake venom metalloproteinases (SVMPs) has been performed using limited sets of peptides or small oligopeptides as experimental substrates. Although this approach has yielded valuable data it is generally limited in scope due to the relatively small sets of substrates used to generate the consensus specificity sequences for these proteinases. In this study we use a large, plasma based, proteome-derived peptide library as substrates along with mass spectrometry to explore the peptide bond specificity of three PI SVMPs and one PIII SVMP to determine their individual peptide cleavage consensus sequences. All of the proteinases assayed displayed a clear preference for a leucine residue in the P1' site. Careful analysis of the specificity profiles of the SVMPs examined showed interesting differences in the preferences at the other P and P' sites suggesting functional differences between these proteinases. The PI SVMPs, leucurolysin-a, atrolysin C, and BaP1, showed preferences across the full P4 to P4' range whereas the PIII SVMP bothropasin showed a narrower range of preferences across the sites. In silico docking experiments with the experimentally derived consensus sequences as well as with comparison of the results to those in the literature regarding peptide bond specificity based on both peptide and protein substrates give rise to a fresh understanding of the specificity of these SVMPS and may serve as a foundation for future experiments to better elucidate their mechanism of action in the complex pathophysiology of snakebite envenomation.
机译:丝氨酸和金属蛋白酶均已显示出在许多蛇的毒液中发挥毒素的作用。这些毒素的天然蛋白质底物的测定是这些蛋白酶的毒素学表征中的重要特征。此外,其肽键特异性的表征对于理解与有效蛋白水解有关的蛋白酶的活性位点偏好以及在设计肽底物和抑制剂先导化合物中的应用具有价值。通常,蛇毒丝氨酸蛋白酶(SVSPs)和蛇毒金属蛋白酶(SVMPs)的肽键裂解特异性的测定已使用有限组的肽或小的寡肽作为实验底物进行。尽管这种方法产生了有价值的数据,但是由于用于产生这些蛋白酶的共有特异性序列的底物相对较少,因此通常范围受到限制。在这项研究中,我们使用大型的基于血浆的蛋白质组衍生的肽库作为底物以及质谱,来研究三种PI SVMP和一种PIII SVMP的肽键特异性,以确定它们各自的肽裂解共有序列。所有检测的蛋白酶均显示出对P1'位点亮氨酸残基的明显偏好。仔细分析所检查的SVMP的特异性谱显示,在其他P和P'位点的偏好存在有趣的差异,表明这些蛋白酶之间存在功能差异。 PI SVMP,白细胞溶血素-a,atrolysin C和BaP1在整个P4至P4'范围内均表现出优先选择,而PIII SVMP苦瓜蛋白酶在各部位上均显示出较窄的选择范围。在计算机对接实验中,通过实验得出的共有序列以及将结果与文献中有关基于肽和蛋白质底物的肽键特异性相关的结果进行比较,使人们对这些SVMPS的特异性有了新的认识,并可作为为将来的实验奠定基础,以更好地阐明其在蛇咬毒害的复杂病理生理中的作用机理。

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