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Identification and functional analysis of a bacteriocin pyocin S6 with ribonuclease activity from a Pseudomonas aeruginosa cystic fibrosis clinical isolate

机译:铜绿假单胞菌囊性纤维化临床分离株中具有核糖核酸酶活性的细菌素脓红素S6的鉴定和功能分析

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摘要

S‐type pyocins are bacteriocins produced by Pseudomonas aeruginosa isolates to antagonize or kill other strains of the same species. They have a modular organization comprising a receptor‐binding domain recognizing a surface constituent of the target bacterium, a domain for translocation through the periplasm, and a killing or toxic domain with DNase, tRNase, or pore‐forming activity. Pyocins S2, S3, S4, and S5 recognize TonB‐dependent ferri‐siderophore receptors in the outer membrane. We here describe a new nuclease bacteriocin, pyocin S6, encoded in the genome of a P. aeruginosa cystic fibrosis (CF) clinical isolate, CF_PA39. Similarly to pyocins S1 and S2, the S6 toxin–immunity gene tandem was recruited to the genomic region encoding exotoxin A. The pyocin S6 receptor‐binding and translocation domains are identical to those of pyocin S1, whereas the killing domain is similar to the 16S ribonuclease domain of Escherichia coli colicin E3. The cytotoxic activity was abolished in pyocin S6 forms with a mutation in the colicin E3‐equivalent catalytic motif. The CF_PA39 S6 immunity gene displays a higher expression level than the gene encoding the killing protein, the latter being only detected when bacteria are grown under iron‐limiting conditions. In the S1‐pyocinogenic strain P. aeruginosa ATCC 25324 and pyocin S2 producer P. aeruginosa PAO1, a remnant of the pyocin S6 killing domain and an intact S6‐type immunity gene are located downstream of their respective pyocin operons. Strain PAO1 is insensitive for pyocin S6, and its S6‐type immunity gene provides protection against pyocin S6 activity. Purified pyocin S6 inhibits one‐fifth of 110 P. aeruginosa CF clinical isolates tested, showing clearer inhibition zones when the target cells are grown under iron limitation. In this panel, about half of the CF clinical isolates were found to host the S6 genes. The pyocin S6 locus is also present in the genome of some non‐CF clinical isolates.
机译:S型脓菌素是铜绿假单胞菌分离物产生的细菌素,可拮抗或杀死同一物种的其他菌株。它们具有模块化的组织,包括识别目标细菌表面成分的受体结合结构域,通过周质易位的结构域以及具有DNase,tRNase或成孔活性的杀伤或毒性结构域。霉素S2,S3,S4和S5识别外膜中依赖TonB的亚铁铁载体。我们在这里描述了一种新的核酸酶细菌素,霉素S6,在铜绿假单胞菌囊性纤维化(CF)临床分离株CF_PA39的基因组中编码。与pyocins S1和S2类似,S6毒素-免疫基因串联被募集到编码外毒素A的基因组区域。pyocin S6受体结合和易位结构域与pyocin S1相同,而杀伤结构域与16S类似大肠杆菌E3的核糖核酸酶结构域。 Pyocin S6形式的细胞毒性活性被消除,但大肠菌素E3等效催化基序发生了突变。 CF_PA39 S6免疫基因显示出比编码杀伤蛋白的基因更高的表达水平,后者仅在细菌在铁限制条件下生长时才能检测到。在S1致脓性致病性铜绿假单胞菌ATCC 25324和产脓素S2的铜绿假单胞菌PAO1中,脓素S6杀伤域的残基和完整的S6型免疫基因位于它们各自的脓素操纵子的下游。 PAO1菌株对秋红素S6不敏感,其S6型免疫基因可提供针对秋红素S6活性的保护。纯化的红霉素S6抑制了所测试的110株铜绿假单胞菌CF临床分离株的五分之一,当靶细胞在铁限制下生长时,其抑菌圈更加清晰。在该小组中,发现约一半的CF临床分离株含有S6基因。在一些非CF临床分离株的基因组中也存在着Pyocin S6基因座。

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