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Acquisition of azide-resistance by elevated SecA ATPase activity confers azide-resistance upon cell growth and protein translocation in Bacillus subtilis

机译:通过升高的Seca ATPase活性采集叠氮化物抗性促进了胚芽芽孢杆菌细胞生长和蛋白质易位的叠氮化物抗性

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SUMMARY: We isolated four azide-resistant secA mutants of Bacillus subtilis and found that all of them were the result of a single amino acid replacement of threonine 128 of SecA by alanine or isoleucine. In the presence of 1·5 mM sodium azide, cell growth and protein translocation of the wild-type strain were completely inhibited, but those of the azide-resistant mutant strains were not. Wild-type and two mutant SecA proteins were purified. Both the basal level and the elevated ATPase activity of the mutant SecA proteins were threefold higher than those of the wild-type SecA. The elevated ATPase activity of the SecA mutants was reduced upon the addition of 1·5 mM sodium azide by only 5-10% as compared with 40% for that of the wild-type. These results indicate that the elevated ATPase activity of the SecA mutants is resistant to sodium azide and that it is also required for the protein translocation process of B. subtilis.
机译:总结:我们孤立枯草芽孢杆菌的四个耐叠氮化物抗性Seca突变体,发现所有这些都是通过丙氨酸或异亮氨酸替换Seca的苏氨酸128的单一氨基酸。在1·5mm叠氮化钠的存在下,完全抑制野生型菌株的细胞生长和蛋白质易位,但耐叠氮化物突变体菌株的含量不存在。纯化野生型和两个突变体Seca蛋白。突变体SECA蛋白的基础水平和升高的ATP酶活性均比野生型SECA的三倍。在加入1·5mM叠氮化钠时,Seca突变体的升高的ATP酶活性仅为5-10%,而野生型为40%。这些结果表明,SECA突变体的升高的ATP酶活性耐氧化钠,并且也需要B.枯草芽孢杆菌的蛋白质转移过程所需的。

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