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首页> 外文期刊>Journal of bacteriology >atxA Controls Bacillus anthracis Capsule Synthesis via acpA and a Newly Discovered Regulator, acpB
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atxA Controls Bacillus anthracis Capsule Synthesis via acpA and a Newly Discovered Regulator, acpB

机译:atxA通过acpA和新发现的调节剂acpB控制炭疽芽胞杆菌胶囊的合成

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Two regulatory genes, acpA and atxA, have been reported to control expression of the Bacillus anthracis capsule biosynthesis operon capBCAD. The atxA gene is located on the virulence plasmid pXO1, while pXO2 carries acpA and the cap genes. acpA has been viewed as the major regulator of the cap operon because it is essential for capsule gene expression in a pXO1? pXO2+ strain. atxA is essential for toxin gene transcription but has also been implicated in control of the cap genes. The molecular functions of the regulatory proteins are unknown. We examined cap gene expression in a genetically complete pXO1+ pXO2+ strain. Our results indicate that another pXO2 gene, acpB (previously called pXO2-53; accession no. NC002146.1:49418-50866), has a role in cap expression. The predicted amino acid sequence of AcpB is 62% similar to that of AcpA and 50% similar to that of AtxA. Assessment of cap gene transcription revealed that cap expression was not affected in a pXO1+ pXO2+ acpB-null mutant and was slightly reduced in an isogenic acpA mutant. However, cap gene expression was abolished in an acpA acpB double mutant. Microscopic examination of capsule synthesis by the mutants corroborated these findings. acpA and acpB expression is controlled by atxA; capsule synthesis and transcription of acpA and acpB were markedly reduced in an atxA mutant. The data suggest that, in a strain containing both virulence plasmids, atxA is the major regulator of capsule synthesis and controls capBCAD expression indirectly, via positive regulation of acpA and acpB.
机译:据报道,有两个调控基因 acpA atxA 可以控制炭疽芽孢杆菌胶囊生物合成操纵子capBCAD 的表达。 。 atxA 基因位于毒力质粒pXO1上,而pXO2携带 acpA cap 基因。 acpA 被认为是 cap 操纵子的主要调控因子,因为它对于pXO1 ? pXO2 + 应变。 atxA 对于毒素基因的转录至关重要,但也与 cap 基因的控制有关。调节蛋白的分子功能是未知的。我们检查了基因上完整的pXO1 + pXO2 + 菌株中 cap 基因的表达。我们的结果表明,另一个pXO2基因 acpB (以前称为pXO2-53;登录号NC002146.1:49418-50866)在 cap 表达中起作用。 AcpB的预测氨基酸序列与AcpA的氨基酸序列相似,为62%,与AtxA相似,为50%。对 cap 基因转录的评估表明, cap 表达在pXO1 + pXO2 + acpB中不受影响 -null突变体,在同基因的 acpA 突变体中略有减少。但是, ac 双突变体中的 cap 基因表达被取消。突变体的胶囊合成的显微镜检查证实了这些发现。 acpA acpB 的表达受 atxA 的控制; atxA 突变体中, acpA acpB 的荚膜合成和转录显着降低。数据表明,在同时含有两种毒力质粒的菌株中, atxA 是胶囊合成的主要调节剂,并通过 acpA < / em>和 acpB

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