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Role of the Single Regulator MrsR1 and the Two-Component System MrsR2/K2 in the Regulation of Mersacidin Production and Immunity

机译:单一调节剂MrsR1和两组分系统MrsR2 / K2在调节过磷酸在生产和免疫中的作用

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The lantibiotic mersacidin is an antimicrobial peptide of 20 amino acids which inhibits bacterial cell wall biosynthesis by binding to the precursor molecule lipid II and which is produced by Bacillus sp. strain HIL Y-85,54728. The structural gene of mersacidin as well as accessory genes is organized in a biosynthetic gene cluster which is located on the chromosome and contains three open reading frames with similarities to regulatory proteins: mrsR2 and mrsK2 encode two proteins with homology to bacterial two-component systems, and mrsR1 shows similarity to a response regulator. Both mrsR2/K2 and mrsR1 were inactivated by insertion of an antibiotic resistance marker. Disruption of mrsR1 resulted in loss of mersacidin production; however, producer self-protection was not impaired. In contrast, inactivation of mrsR2/K2 led to an increased susceptibility to mersacidin whereas biosynthesis of the lantibiotic remained unaffected. Binding of mersacidin to intact cells was significantly enhanced in the mrsR2/K2 knockout mutant. Reverse transcription-PCR analysis from total RNA preparations showed that in contrast to the wild-type strain, the structural genes of the ABC transporter MrsFGE were not transcribed in the knockout mutant. It was therefore concluded that producer self-protection against mersacidin is conferred by the ABC transporter MrsFGE and that the transcription of mrsFGE is regulated by MrsR2/K2, whereas production of the antibacterial peptide is solely activated by MrsR1.
机译:羊毛硫抗生素羟色胺是一种20个氨基酸的抗菌肽,它通过与前体分子脂质II结合而抑制细菌细胞壁的生物合成,由芽孢杆菌属(Bacillus sp。)产生。菌株HIL Y-85,54728。 mersacidin和辅助基因的结构基因组织在位于染色体上的生物合成基因簇中,并包含三个与调控蛋白相似的开放阅读框:mrsR2和mrsK2编码与细菌两组分系统同源的两种蛋白, mrsR1与响应调节器相似。通过插入抗生素抗性标记使mrsR2 / K2和mrsR1失活。 mrsR1的破坏导致产酸的损失;但是,生产者的自我保护并没有受到损害。相反,失活的mrsR2 / K2导致对mersacidin的敏感性增加,而羊毛硫抗生素的生物合成仍然不受影响。在mrsR2 / K2基因敲除突变体中,mersacidin与完整细胞的结合显着增强。从总RNA制备物中进行的逆转录PCR分析表明,与野生型菌株相比,ABC转运蛋白MrsFGE的结构基因未在敲除突变体中转录。因此,可以得出结论,ABC转运蛋白MrsFGE赋予了生产者针对过氧化氢丝氨酸的自我保护作用,而mrsFGE的转录受MrsR2 / K2调控,而抗菌肽的产生仅由MrsR1激活。

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