首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Fatty acid composition modulates sensitivity of Legionella pneumophila to warnericin RK, an antimicrobial peptide.
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Fatty acid composition modulates sensitivity of Legionella pneumophila to warnericin RK, an antimicrobial peptide.

机译:脂肪酸成分可调节嗜肺军团菌对抗菌肽Warnericin RK的敏感性。

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摘要

Warnericin RK is an antimicrobial peptide, produced by a Staphyloccocus warneri strain, described to be specifically active against Legionella, the pathogenic bacteria responsible for Legionnaires' disease. Warnericin RK is an amphiphilic alpha-helical peptide, which possesses a detergent-like mode of action. Two others peptides, delta-hemolysin I and II, produced by the same S. warneri strain, are highly similar to S. aureus delta-hemolysin and also display anti-Legionella activity. It has been recently reported that S. aureus delta-hemolysin activity on vesicles is likewise related to phospholipid acyl-chain structure, such as chain length and saturation. As staphylococcal delta-hemolysins were highly similar, we thus hypothesized that fatty acid composition of Legionella's membrane might influence the sensitivity of the bacteria to warnericin RK. Relationship between sensitivity to the peptide and fatty acid composition was then followed in various conditions. Cells in stationary phase, which were already described as less resistant than cells in exponential phase, displayed higher amounts of branched-chain fatty acids (BCFA) and short chain fatty acids. An adapted strain, able to grow at a concentration 33 fold higher than minimal inhibitory concentration of the wild type (i.e. 1muM), was isolated after repeated transfers of L. pneumophila in the presence of increased concentrations of warnericin RK. The amount of BCFA was significantly higher in the adapted strain than in the wild type strain. Also, a transcriptomic analysis of the wild type and adapted strains showed that two genes involved in fatty acid biosynthesis were repressed in the adapted strain. These genes encode enzymes involved in desaturation and elongation of fatty acids respectively. Their repression was in agreement with the decrease of unsaturated fatty acids and fatty acid chain length in the adapted strain. Conclusively, our results indicate that the increase of BCFA and the decrease of fatty acid chain length in membrane were correlated with the increase in resistance to warnericin RK. Therefore, fatty acid profile seems to play a critical role in the sensitivity of L. pneumophila to warnericin RK.
机译:Warnericin RK是一种由华氏葡萄球菌菌株产生的抗菌肽,据描述对军团菌具有特殊活性,军团菌是导致军团菌病的致病细菌。 Warnericin RK是一种两亲性的α-螺旋肽,具有类似洗涤剂的作用方式。由相同的华氏链球菌菌株产生的另外两个肽,δ-溶血素I和II与金黄色葡萄球菌的δ-溶血素高度相似,并且还显示出抗军团菌的活性。最近有报道,金黄色葡萄球菌δ-溶血素对囊泡的活性同样与磷脂酰基链结构有关,例如链长和饱和度。由于葡萄球菌的δ-溶血素高度相似,因此我们推测军团菌膜的脂肪酸组成可能会影响细菌对warnericin RK的敏感性。然后在各种条件下跟踪对肽的敏感性与脂肪酸组成之间的关系。固定相的细胞已被描述为比指数相的细胞具有更低的抵抗力,但它们却显示出更高含量的支链脂肪酸(BCFA)和短链脂肪酸。在增加浓度的Warnericin RK存在下反复转移嗜肺乳杆菌后,分离出一种适应性菌株,该菌株能够以比野生型最小抑制浓度(即1μM)高33倍的浓度生长。适应菌株中BCFA的量显着高于野生型菌株。另外,对野生型和适应菌株的转录组分析表明,在适应菌株中两个与脂肪酸生物合成有关的基因被抑制。这些基因编码分别涉及脂肪酸的去饱和和伸长的酶。它们的抑制与适应菌株中不饱和脂肪酸和脂肪酸链长度的减少是一致的。最终,我们的结果表明,BCFA的增加和膜中脂肪酸链长度的减少与对Warnericin RK的抗性增加相关。因此,脂肪酸谱似乎在嗜肺乳杆菌对华纳霉素RK的敏感性中起关键作用。

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