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外膜蛋白和脂多糖在[具体对象]对抗菌肽敏感性中的作用。 需注意,原文中“for the Sensitivity of to Antimicrobial Peptides”部分似乎表述不完整,缺少一个具体的主体。以上译文是根据现有内容尽量完善后的结果。

The Role of Outer Membrane Proteins and Lipopolysaccharides for the Sensitivity of to Antimicrobial Peptides.

作者信息

Ebbensgaard Anna, Mordhorst Hanne, Aarestrup Frank M, Hansen Egon B

机构信息

National Food Institute, Technical University of Denmark, Kongens Lyngby, Denmark.

Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

Front Microbiol. 2018 Sep 7;9:2153. doi: 10.3389/fmicb.2018.02153. eCollection 2018.

Abstract

Bacterial resistance to classical antibiotics is emerging worldwide. The number of infections caused by multidrug resistant bacteria is increasing and becoming a serious threat for human health globally. In particular, Gram-negative pathogens including multidrug resistant are of serious concern being resistant to the currently available antibiotics. All Gram-negative bacteria are enclosed by an outer membrane which acts as an additional protection barrier preventing the entry of toxic compounds including antibiotics and antimicrobial peptides (AMPs). In this study we report that the outer membrane component lipopolysaccharide (LPS) plays a crucial role for the antimicrobial susceptibility of BW25113 against the cationic AMPs Cap18, Cap11, Cap11-1-18m, melittin, indolicidin, cecropin P1, cecropin B, and the polypeptide antibiotic colistin, whereas the outer membrane protease OmpT and the lipoprotein Lpp only play a minor role for the susceptibility against cationic AMPs. Increased susceptibility toward cationic AMPs was found for LPS deficient mutants of BW25113 harboring deletions in any of the genes required for the inner part of core-oligosaccharide of the LPS, , and . In addition, our study demonstrates that the antimicrobial activity of Cap18, Cap11, Cap11-1-18m, cecropin B, and cecropin P1 is not only dependent on the inner part of the core oligosaccharide, but also on the outer part and its sugar composition. Finally, we demonstrated that the antimicrobial activity of selected Cap18 derivatives harboring amino acid substitutions in the hydrophobic interface, are non-active against wild-type ATCC29522. By deleting , or the antimicrobial activity of the non-active derivatives can be partially or fully restored, suggesting a very close interplay between the LPS core oligosaccharide and the specific Cap18 derivative. Summarizing, this study implicates that the nature of the outer membrane component LPS has a big impact on the antimicrobial activity of cationic AMPs against . In particular, the inner as well as the outer part of the core oligosaccharide are important elements determining the antimicrobial susceptibility of against cationic AMPs.

摘要

细菌对传统抗生素的耐药性正在全球范围内出现。由多重耐药菌引起的感染数量不断增加,对全球人类健康构成严重威胁。特别是,包括多重耐药菌在内的革兰氏阴性病原体对目前可用的抗生素具有耐药性,令人严重担忧。所有革兰氏阴性菌都被一层外膜包围,该外膜作为额外的保护屏障,阻止包括抗生素和抗菌肽(AMPs)在内的有毒化合物进入。在本研究中,我们报告外膜成分脂多糖(LPS)对BW25113对阳离子AMPs Cap18、Cap11、Cap11 - 1 - 18m、蜂毒素、吲哚杀菌素、天蚕素P1、天蚕素B以及多肽抗生素黏菌素的抗菌敏感性起着关键作用,而外膜蛋白酶OmpT和脂蛋白Lpp对阳离子AMPs的敏感性仅起次要作用。在LPS核心寡糖内部所需的任何基因(、和)中存在缺失的BW25113 LPS缺陷突变体,对阳离子AMPs的敏感性增加。此外,我们的研究表明,Cap18、Cap11、Cap11 - 1 - 18m、天蚕素B和天蚕素P1的抗菌活性不仅取决于核心寡糖的内部部分,还取决于外部部分及其糖组成。最后,我们证明在疏水界面带有氨基酸取代的选定Cap18衍生物对野生型ATCC29522无抗菌活性。通过缺失或,无活性衍生物的抗菌活性可以部分或完全恢复,这表明LPS核心寡糖与特定Cap18衍生物之间存在非常密切的相互作用。总之,本研究表明外膜成分LPS的性质对阳离子AMPs对的抗菌活性有很大影响。特别是,核心寡糖的内部和外部部分是决定对阳离子AMPs抗菌敏感性的重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9059/6137088/44dcd62d7259/fmicb-09-02153-g0001.jpg

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