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Characterization of a proteolytic enzyme derived from a Bacillus strain that effectively degrades prion protein

机译:表征可有效降解病毒蛋白的芽孢杆菌菌株的蛋白水解酶

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The purpose of this paper was to screen candidate bacterial strains for the production of proteases suitable for application to the degradation of pathogenic forms of prion protein (PrPSc). This paper describes the biochemical characteristics and proteolytic activity of the isolated protease. After screening more than 200 bacterial proteases for keratinolytic activity, we identified a Bacillus stain that produced a protease exhibiting high-degradation activity against a scrapie PrPSc. Sequence analysis indicated that this serine-protease belonged to the Subtilisin family and had optimum pH and temperature ranges of 9-10 and 60-70 degrees C. Western blotting analysis revealed that the protease was also capable of decomposing bovine spongiform encephalopathy-infected brain homogenate. In addition, the protease was demonstrated to degrade dried PrPSc that had become firmly attached to a plastic surface considerably more effectively than proteinase K or PWD-1, a previously reported keratinase. These results indicate that the isolated protease exhibited higher activity for PrPSc degradation compared with other proteases examined. This protease could be used under moderate conditions for the decontamination of precision instruments that are susceptible to PrPSc contamination.
机译:本文的目的是筛选适合生产降解of病毒蛋白(PrPSc)病原体形式的蛋白酶的候选细菌菌株。本文介绍了分离的蛋白酶的生化特性和蛋白水解活性。在筛选出超过200种细菌蛋白酶的角蛋白分解活性后,我们鉴定了一种芽孢杆菌染色剂,该染色剂产生了一种对痒病PrPSc表现出高降解活性的蛋白酶。序列分析表明该丝氨酸蛋白酶属于枯草杆菌蛋白酶家族,其最适pH和温度范围为9-10和60-70℃。蛋白质印迹分析表明该蛋白酶也能分解牛海绵状脑病感染的脑匀浆。 。此外,与以前报道的角蛋白蛋白酶K或PWD-1相比,蛋白酶可以更有效地降解已牢固地附着在塑料表面上的干燥PrPSc。这些结果表明,与所检查的其他蛋白酶相比,分离的蛋白酶对PrPSc的降解表现出更高的活性。该蛋白酶可在中等条件下用于对易受PrPSc污染的精密仪器进行消毒。

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