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首页> 外文期刊>AMB Express >Recombinant expression and biochemical characterization of a novel keratinase BsKER71 from feather degrading bacterium Bacillus subtilis S1-4
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Recombinant expression and biochemical characterization of a novel keratinase BsKER71 from feather degrading bacterium Bacillus subtilis S1-4

机译:来自羽毛降解细菌的新型角蛋白酶BSKER71的重组表达和生化表征<斜杆菌>枯草芽孢杆菌 S1-4

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Bacillus subtilis S1-4, isolated from chicken feather could efficiently degrade feathers by secreting several extracellular proteases. In order to get insight into the individual protease involved in keratin hydrolysis, a keratinase designed as BsKER71 was cloned and expressed in Bacillus subtilis WB600. In silico analysis revealed that BsKER71 protein contained a mature protein of 36.1?kDa. Further, purified BsKER71 could hydrolyze a variety of natural proteins, such as fibrous protein, collagen protein, casein, keratin and bovine serum albumin. In addition, this keratinase exhibited high enzyme activity in a wide range of pH and optimal pH of 10.0 and 9.0 in the hydrolysis of casein and keratin, respectively. Similarly, the optimal temperature was 55?°C and 50?°C for the hydrolysis of above two substrates, respectively. The hydrolytic activity was significantly inhibited by phenylmethanesulfonyl fluoride (PMSF), indicating the presence of serine residue in the active site. Moreover, ethylenediaminetetraacetic acid (EDTA) and phenanthroline moderately inhibited the hydrolytic activity. The catalytic activity was stimulated by Mg ~(2+) and Ca ~(2+), but greatly inhibited by Cu ~(2+). Furthermore, several chemicals exhibited different effects on the hydrolysis of casein and keratin by BsKER71. These results provided a better understanding of BsKER71 from feather degrading bacterium B. subtilis S1-4.
机译:从鸡羽中分离的枯草芽孢杆菌S1-4可以通过分泌几种细胞外蛋白酶有效地降低羽毛。为了能够深入了解所涉及角蛋白水解的单个蛋白酶,克隆了设计为Bsker71的角蛋白酶并在枯草芽孢杆菌WB600中表达。在基石分析中,BSKer71蛋白含有36.1℃的成熟蛋白质。此外,纯化的BSKer71可以水解各种天然蛋白质,例如纤维蛋白,胶原蛋白,酪蛋白,角蛋白和牛血清白蛋白。此外,这种角蛋白酶在酪蛋白和角蛋白的水解中,在宽范围的pH和最佳pH值下表现出高酶活性。类似地,最佳温度分别为55Ω℃和50℃,分别用于上述两个基质的水解。通过苯甲酰氯氟乙烯(PMSF)显着抑制水解活性,表明活性位点中存在丝氨酸残基。此外,乙二胺四乙酸(EDTA)和菲咯啉适度抑制水解活性。通过Mg〜(2+)和Ca〜(2+)刺激催化活性,但是通过Cu〜(2+)大大抑制。此外,几种化学品对BSKer71对酪蛋白和角蛋白的水解表现出不同的影响。这些结果提供了从羽毛降解细菌B.枯草芽孢杆菌S1-4的BSKER71更好地理解。

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