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Identification of NewSnake Venom MetalloproteinaseInhibitors Using Compound Screening and Rational Peptide Design

机译:识别新蛇毒金属蛋白酶使用化合物筛选和合理肽设计的抑制剂

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摘要

The majority of snakebite envenomations in Central America are caused by the viperid species Bothrops asper, whose venom contains a high proportion of zinc-dependent metalloproteinases that play a relevant role in the pathogenesis of hemorrhage characteristic of these envenomations. Broad metalloproteinase inhibitors, such as the peptidomimetic hydroxamate Batimastat, have been shown to inhibit snake venom metalloproteinases (SVMP). However, the difficulty in having open public access to Batimastat and similar molecules highlights the need to design new inhibitors of SVMPs that could be applied in the treatment of snakebite envenomations. We have chosen the SVMP BaP1 as a model to search for new inhibitors using different strategies, that is, screening of the Prestwick Chemical Library and rational peptide design. Results from these approaches provide clues on the structural requirements for efficient BaP1 inhibition and pave the way for the design of new inhibitors of SVMP.
机译:中美洲的大多数蛇咬毒害是由蛇毒蛇毒(Aperrops asper)引起的,其蛇毒中含有大量锌依赖性金属蛋白酶,这些酶在这些毒害的出血特征中起着重要作用。广泛的金属蛋白酶抑制剂,例如拟肽异羟肟酸酯Batimastat,已显示出抑制蛇毒金属蛋白酶(SVMP)的作用。但是,难以公开获得巴蒂司他和类似分子的公开信息,凸显了设计新的SVMP抑制剂的必要性,该抑制剂可用于治疗蛇咬毒害。我们选择了SVMP BaP1作为模型,使用不同的策略来寻找新的抑制剂,即筛选Prestwick化学文库和合理的肽设计。这些方法的结果为有效抑制BaP1提供了结构上的线索,并为设计新的SVMP抑制剂铺平了道路。

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