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Inner membrane proteins YgdD and SbmA are required for the complete susceptibility of Escherichia coli to the proline-rich antimicrobial peptide arasin 1(1–25)

机译:内膜蛋白YgdD和SbmA是大肠杆菌对富含脯氨酸的抗菌肽Arasin 1(1-25)的完全易感性所必需的

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Arasin 1 from the spider crab Hyas araneus is a proline-rich antimicrobial peptide (PR-AMP), which kills target bacteria by a non-membranolytic mechanism. By using a fluorescent derivative of the peptide, we showed that arasin 1 rapidly penetrates into Escherichia coli cells without membrane damage. To unravel its mode of action, a knockout gene library of E. coli was screened and two types of mutants with a less susceptible phenotype to the arasin 1 fragment (1–23) were found. The first bore the mutation of sbmA, a gene coding for an inner membrane protein involved in the uptake of different antibiotic peptides. The second mutation was located in the ygdD gene, coding for a conserved inner membrane protein of unknown function. Functional studies showed that YgdD is required for the full susceptibility to arasin 1(1–25), possibly by supporting its uptake and/or intracellular action. These results indicated that different bacterial proteins are exploited by arasin 1(1–25) to exert its antibacterial activity and add new insights on the complex mode of action of PR-AMPs.
机译:来自蜘蛛蟹Hyas araneus的Arasin 1是富含脯氨酸的抗菌肽(PR-AMP),可通过非膜分解机制杀死目标细菌。通过使用该肽的荧光衍生物,我们表明arasin 1迅速渗透到大肠杆菌细胞中而没有膜损伤。为了阐明其作用方式,筛选了一个大肠杆菌的敲除基因文库,发现了两种对arasin 1片段的表型不那么敏感的突变体(1-23)。首先是sbmA的突变,它是一种编码内膜蛋白的基因,该蛋白参与了不同抗生素肽的摄取。第二个突变位于ygdD基因中,编码功能未知的保守内膜蛋白。功能研究表明,YgdD必需完全支持arasin 1(1–25),可能是通过支持其摄取和/或细胞内作用来实现的。这些结果表明,arasin 1(1–25)利用不同的细菌蛋白发挥其抗菌活性,并为PR-AMPs的复杂作用方式增添了新见解。

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