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首页> 外文期刊>Journal of bacteriology >An Extracytoplasmic-Function Sigma Factor Is Involved in a Pathway Controlling β-Exotoxin I Production in Bacillus thuringiensis subsp. thuringiensis Strain 407-1
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An Extracytoplasmic-Function Sigma Factor Is Involved in a Pathway Controlling β-Exotoxin I Production in Bacillus thuringiensis subsp. thuringiensis Strain 407-1

机译:苏胞芽孢杆菌亚种中控制β-外毒素I产生的途径涉及胞外功能Sigma因子。苏云金菌株407-1

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β-Exotoxin I is an insecticidal nucleotide analogue secreted by various Bacillus thuringiensis strains. In this report, we describe the characterization and transcriptional analysis of a gene cluster, designated sigW-ecfX-ecfY, that is essential for β-exotoxin I production in B. thuringiensis subsp. thuringiensis strain 407-1. In this strain, the disruption of the sigW cluster resulted in nontoxic culture supernatants. sigW encodes a protein of 177 residues that is 97 and 94% identical to two putative RNA polymerase extracytoplasmic-function-type sigma factors from Bacillus anthracis strain Ames and Bacillus cereus strain ATCC 14579, respectively. It is also 50, 30, and 26% identical to SigW from Clostridium perfringens and SigW and SigX from Bacillus subtilis, respectively. EcfX, encoded by the gene following sigW, significantly repressed the expression of sigW when both genes were overtranscribed, suggesting that it could be the anti-sigma factor of SigW. Following the loss of its curable cry plasmid, strain 407 became unable to synthesize crystal toxins, in contrast to the mutant strain 407-1(Cry?)(Pig+), which overproduced this molecule in the absence of this plasmid. Transcriptional analysis of sigW indicated that this gene was expressed during the stationary phase and only in the 407-1(Cry?)(Pig+) mutant. This suggests that in the wild type-407(Cry+) strain, β-exotoxin I was produced from determinants located on a cry gene-bearing plasmid and that sigW is able to induce β-exotoxin I production in B. thuringiensis in the absence of cry gene-bearing plasmids. Although the signal responsible for this activation is unknown, these results indicate that β-exotoxin I production in B. thuringiensis can be restored or induced via an alternative pathway that requires sigW expression.
机译:β-ExotoxinI是苏云金芽胞杆菌各种菌株分泌的一种杀虫核苷酸类似物。在本报告中,我们描述了一个基因簇的表征和转录​​分析,该簇被称为 sigW - ecfX - ecfY ,这对于β- B中外毒素I的产生。苏云金亚种苏云金芽孢杆菌407-1。在该菌株中, sigW 簇的破坏导致无毒的培养上清液。 sigW 编码一个177个残基的蛋白质,与炭疽杆菌(Bemillus anthracis)菌株Ames和 Bacillus的两个推定RNA聚合酶胞质功能型sigma因子有97%和94%的相同蜡样菌株分别为ATCC 14579。它分别与产气荚膜梭菌(Clostridium perfringens)的SigW和枯草芽孢杆菌(Bacillus subtilis)的SigW和SigX分别具有50、30和26%的同一性。当两个基因都被过度转录时,由 sigW 之后的基因编码的EcfX显着抑制 sigW 的表达,表明它可能是SigW的抗σ因子。与可固化的 cry 质粒丢失后,菌株407无法合成晶体毒素,这与突变菌株407-1(Cry ?)(Pig + ),在没有此质粒的情况下,该分子会过量产生。对 sigW 的转录分析表明,该基因在稳定期表达,仅在407-1(Cry ?)(Pig + )中表达。突变体。这表明在野生型407(Cry + )菌株中,β-外毒素I由位于 cry 基因的质粒上的决定簇产生,而 sigW 能够诱导 B中产生β-外毒素I。苏云金芽孢杆菌中缺少 cry 基因-携带质粒。尽管导致该激活的信号是未知的,但是这些结果表明在 B中产生了β-外毒素I。苏云金可以通过需要 sigW 表达的替代途径恢复或诱导。

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