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Genomic and molecular characterization of a novel quorum sensing molecule in Bacillus licheniformis

机译:地衣芽孢杆菌中一种新的群体感应分子的基因组和分子表征

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Quorum sensing molecules (QSMs) are involved in the regulation of complicated processes helping bacterial populations respond to changes in their cell-density. Although the QS gene cluster (comQXPA) has been identified in the genome sequence of some bacilli, the QS system B. licheniformis has not been investigated in detail, and its QSM (ComX pheromone) has not been identified. Given the importance of this antagonistic bacterium as an industrial workhorse, this study was aimed to elucidate B. licheniformis NCIMB-8874 QS. The results obtained from bioinformatics studies on the whole genome sequence of this strain confirmed the presence of essential quorum sensing-related genes. Although polymorphism was verified in three proteins of this cluster, ComQ, precursor-ComX and ComP, the transcription factor ComA was confirmed as the most conserved protein. The cell–cell communication of B. licheniformis NCIMB-8874 was investigated through further elucidation of the ComX pheromone as 13-amino acid peptide. The peptide sequence of the pheromone has been described through biochemical characterisation.
机译:群体感应分子(QSM)参与复杂过程的调节,有助于细菌群体对其细胞密度的变化做出反应。尽管已在某些细菌的基因组序列中鉴定出QS基因簇(comQXPA),但尚未对QS系统地衣芽孢杆菌进行详细研究,也未鉴定其QSM(ComX信息素)。鉴于这种拮抗细菌作为工业用马具的重要性,本研究旨在阐明地衣芽孢杆菌NCIMB-8874 QS。从该菌株全基因组序列的生物信息学研究获得的结果证实了必需的群体感应相关基因的存在。尽管在该簇的三种蛋白质ComQ,前体ComX和ComP中证实了多态性,但转录因子ComA被证实是最保守的蛋白质。通过进一步阐明ComX信息素为13个氨基酸的肽,研究了地衣芽孢杆菌NCIMB-8874的细胞间通讯。信息素的肽序列已通过生物化学表征进行了描述。

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