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Data mining and characterization of a novel pediocin-like bacteriocin system from the genome of Pediococcus pentosaceus ATCC 25745

机译:从Pediococcus Pentosaceus ATCC 25745基因组的新型Pediocin样菌系统的数据挖掘与表征

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The genome of Pediococcus pentosaceus ATCC 25745 contains a gene cluster that resembles a regulated bacteriocin system. The gene cluster has an operon-like structure consisting of a putative pediocin-like bacteriocin gene (termed penA) and a potential immunity gene (termed peiA). Genetic determinants involved in bacteriocin transport and regulation are also found in proximity to penA and peiA but the so-called accessory gene involved in transport and the inducer gene involved in regulation are missing. Consequently, this bacterium is a poor bacteriocin producer. To analyse the potency of the putative bacteriocin operon, the two genes penA-peiA were heterologously expressed in a Lactobacillus sakei host that contains the complete apparatus for gene activation, maturation and externalization of bacteriocins. It was demonstrated that the heterologous host expressing penA and peiA produced a strong bacteriocin activity; in addition, the host became immune to its own bacteriocin, identifying the gene pair penA-peiA as a potent bacteriocin system. The novel pediocin-like bacteriocin, termed penocin A, has an isotopic mass [M+H]+ of 4684.6?Da as determined by mass spectrometry; this value corresponds well to the expected size of the mature 42?aa peptide containing a disulfide bridge. The bacteriocin is heat-stable but protease-sensitive and has a calculated pI of 9.45. Penocin A has a relatively broad inhibition spectrum, including pathogenic Listeria and Clostridium species. Immediately upstream of the regulatory genes reside some features that resemble remnants of a disrupted inducer gene. This degenerate gene was restored and shown to encode a double-glycine leader-containing peptide. Furthermore, expression of the restored gene triggered high bacteriocin production in P. pentosaceus ATCC 25745, thus confirming its role as an inducer in the pen regulon.
机译:Pediococcus pentosaceus ATCC 25745的基因组含有一种类似于调节的菌株系统的基因簇。基因簇具有型式类似的结构,其由推定的Pediocin菌药基因(称为Pena)和潜在的免疫基因(称为Peia)。遗传决定簇参与细菌转运和调节的遗传决定簇也涉及PENA和PEIA,但缺少参与转运和调节中涉及调节的诱导症基因的所谓辅助基因。因此,这种细菌是一种可怜的菌丝生产者。为了分析推定的菌丝型术的效力,两种基因Pena-Peia在乳酸杆菌Sakei宿主中被异源表达,其含有用于基因活化,成熟和菌丝的完整装置。结果表明,表达PENA和PEIA的异源宿主产生了强烈的细菌活性;此外,宿主对其自身的细菌霉素的免疫,将基因对Pena-Peia鉴定为有效的细菌素系统。新的Pediocin样菌,称为柚子A,具有由质谱法测定的4684.6μm的同位素质量[M + H] +;该值对应于成熟42的预期尺寸?含有二硫桥的Aa肽。细菌素是热稳定但蛋白酶敏感的,并且具有9.45的计算PI。 Penocin A具有相对较广泛的抑制谱,包括致病性李斯特菌和梭菌种类。在调节基因的上游立即居住一些类似于破坏诱导物基因的残余的特征。将该退化基因进行恢复并显示为编码含双甘氨酸的含有肽的肽。此外,恢复基因的表达引发了P.Pentosaceus ATCC 25745中的高菌菌产生,从而证实了其作为笔调节件中的诱导剂的作用。

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