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温度和表面活性剂诱导的膜修饰通过不同机制改变单核细胞增生李斯特菌对乳链菌肽的敏感性。

Temperature- and surfactant-induced membrane modifications that alter Listeria monocytogenes nisin sensitivity by different mechanisms.

作者信息

Li Jie, Chikindas Michael L, Ludescher Richard D, Montville Thomas J

机构信息

Department of Food Science, Cook College, The New Jersey Agricultural Experiment Station, Rutgers, The State University of New Jersey, New Brunswick 08901, USA.

出版信息

Appl Environ Microbiol. 2002 Dec;68(12):5904-10. doi: 10.1128/AEM.68.12.5904-5910.2002.

Abstract

Nisin interacts with target membranes in four sequential steps: binding, insertion, aggregation, and pore formation. Alterations in membrane composition might influence any of these steps. We hypothesized that cold temperatures (10 degrees C) and surfactant (0.1% Tween 20) in the growth medium would influence Listeria monocytogenes membrane lipid composition, membrane fluidity, and, as a result, sensitivity to nisin. Compared to the membranes of cells grown at 30 degrees C, those of L. monocytogenes grown at 10 degrees C had increased amounts of shorter, branched-chain fatty acids, increased fluidity (as measured by fluorescence anisotropy), and increased nisin sensitivity. When 0.1% Tween 20 was included in the medium and the cells were cultured at 30 degrees C, there were complex changes in lipid composition. They did not influence membrane fluidity but nonetheless increased nisin sensitivity. Further investigation found that these cells had an increased ability to bind radioactively labeled nisin. This suggests that the modification of the surfactant-adapted cell membrane increased nisin sensitivity at the binding step and demonstrates that each of the four steps can contribute to nisin sensitivity.

摘要

乳链菌肽与靶膜的相互作用分为四个连续步骤

结合、插入、聚集和孔形成。膜组成的改变可能会影响这些步骤中的任何一个。我们假设生长培养基中的低温(10摄氏度)和表面活性剂(0.1%吐温20)会影响单核细胞增生李斯特菌的膜脂组成、膜流动性,进而影响其对乳链菌肽的敏感性。与在30摄氏度下生长的细胞的膜相比,在10摄氏度下生长的单核细胞增生李斯特菌的膜中短链、支链脂肪酸的含量增加,流动性增强(通过荧光各向异性测量),对乳链菌肽的敏感性也增加。当培养基中加入0.1%吐温20且细胞在30摄氏度下培养时,脂质组成发生了复杂变化。它们不影响膜流动性,但仍增加了对乳链菌肽的敏感性。进一步研究发现,这些细胞结合放射性标记乳链菌肽的能力增强。这表明适应表面活性剂的细胞膜的修饰在结合步骤增加了对乳链菌肽的敏感性,并证明四个步骤中的每一个都可能影响对乳链菌肽的敏感性。

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