首页> 外文期刊>Journal of bacteriology >Multiple copies of the proB gene enhance degS-dependent extracellular protease production in Bacillus subtilis.
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Multiple copies of the proB gene enhance degS-dependent extracellular protease production in Bacillus subtilis.

机译:proB基因的多个副本增强了枯草芽孢杆菌中degS依赖性细胞外蛋白酶的产生。

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Bacillus subtilis secretes extracellular proteases whose production is positively regulated by a two-component regulatory system, DegS-DegU, and other regulatory factors including DegR. To identify an additional regulatory gene(s) for exoprotease production, we performed a shotgun cloning in the cell carrying multiple copies of degR and found a transformant producing large amounts of the exoproteases. The plasmid in this transformant, pLC1, showed a synergistic effect with multiple copies of degR on the production of the extracellular proteases, and it required degS for its enhancing effect. The DNA region responsible for the enhancement contained the proB gene, as shown by restriction analyses and sequence determination. The proB gene encoding gamma-glutamyl kinase was followed by the proA gene encoding glutamyl-gamma-semialdehyde dehydrogenase at an interval of 39 nucleotides, suggesting that the genes constitute an operon. pLC1 contained the complete proB gene and a part of proA lacking the proA C-terminal region. It was also found that proB on the chromosome showed a synergistic effect with multiple copies of degR. We consider on the basis of these results that the metabolic intermediate, gamma-glutamyl phosphate, would transmit a signal to DegS, resulting in a higher level of phosphorylated DegU. Possible involvement of DegR in this process is discussed.
机译:枯草芽孢杆菌分泌细胞外蛋白酶,其产生受到两组分调节系统DegS-DegU和其他调节因子(包括DegR)的正调控。为了鉴定用于产生外切蛋白酶的其他调控基因,我们在携带多拷贝degR的细胞中进行了gun弹枪克隆,并发现了产生大量外切蛋白酶的转化子。该转化子中的质粒pLC1在细胞外蛋白酶的生产中具有多拷贝degR的协同作用,并且需要degS来增强其作用。如限制性分析和序列确定所示,负责增强的DNA区域包含proB基因。编码γ-谷氨酰激酶的proB基因后接编码39个核苷酸间隔的谷氨酰基-γ-半醛脱氢酶的proA基因,表明该基因构成操纵子。 pLC1包含完整的proB基因和一部分proA缺少proA C端区域。还发现染色体上的proB与多拷贝的degR表现出协同作用。根据这些结果,我们认为代谢中间体γ-谷氨酰磷酸会向DegS传递信号,导致磷酸化的DegU含量更高。讨论了DegR在此过程中可能的参与。

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