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IIa类细菌素抗性单核细胞增生李斯特氏菌细胞的膜中,不饱和及短酰基链磷脂酰甘油的水平升高。

Membranes of class IIa bacteriocin-resistant Listeria monocytogenes cells contain increased levels of desaturated and short-acyl-chain phosphatidylglycerols.

作者信息

Vadyvaloo Viveka, Hastings John W, van der Merwe Marthinus J, Rautenbach Marina

机构信息

Department of Biochemistry. Electrospray Mass Spectrometry Unit, Central Analytical Facility, University of Stellenbosch, Matieland 7602, Republic of South Africa.

出版信息

Appl Environ Microbiol. 2002 Nov;68(11):5223-30. doi: 10.1128/AEM.68.11.5223-5230.2002.

Abstract

A major concern in the use of class IIa bacteriocins as food preservatives is the well-documented resistance development in target Listeria strains. We studied the relationship between leucocin A, a class IIa bacteriocin, and the composition of the major phospholipid, phosphatidylglycerol (PG), in membranes of both sensitive and resistant L. monocytogenes strains. Two wild-type strains, L. monocytogenes B73 and 412, two spontaneous mutants of L. monocytogenes B73 with intermediate resistance to leucocin A (+/-2.4 and +/-4 times the 50% inhibitory concentrations [IC50] for sensitive strains), and two highly resistant mutants of each of the wild-type strains (>500 times the IC50 for sensitive strains) were analyzed. Electrospray mass spectrometry analysis showed an increase in the ratios of unsaturated to saturated and short- to long-acyl-chain species of PG in all the resistant L. monocytogenes strains in our study, although their sensitivities to leucocin A were significantly different. This alteration in membrane phospholipids toward PGs containing shorter, unsaturated acyl chains suggests that resistant strains have cells with a more fluid membrane. The presence of this phenomenon in a strain (L. monocytogenes 412P) which is resistant to both leucocin A and pediocin PA-1 may indicate a link between membrane composition and class IIa bacteriocin resistance in some L. monocytogenes strains. Treatment of strains with sterculic acid methyl ester (SME), a desaturase inhibitor, resulted in significant changes in the leucocin A sensitivity of the intermediate-resistance strains but no changes in the sensitivity of highly resistant strains. There was, however, a decrease in the amount of unsaturated and short-acyl-chain PGs after treatment with SME in one of the intermediate and both of the highly resistant strains, but the opposite effect was observed for the sensitive strains. It appears, therefore, that membrane adaptation may be part of a resistance mechanism but that several resistance mechanisms may contribute to a resistance phenotype and that levels of resistance vary according to the type of mechanisms present.

摘要

将IIa类细菌素用作食品防腐剂时,一个主要问题是目标李斯特菌菌株中已被充分证明的耐药性发展。我们研究了IIa类细菌素亮菌素A与敏感和耐药单核细胞增生李斯特菌菌株膜中主要磷脂磷脂酰甘油(PG)组成之间的关系。分析了两株野生型菌株,单核细胞增生李斯特菌B73和412,两株对亮菌素A具有中等抗性的单核细胞增生李斯特菌B73自发突变体(对敏感菌株的50%抑制浓度[IC50]分别为+/-2.4和+/-4倍),以及每株野生型菌株的两株高抗性突变体(对敏感菌株的IC50大于500倍)。电喷雾质谱分析表明,在我们研究的所有耐药单核细胞增生李斯特菌菌株中,PG的不饱和与饱和以及短与长酰基链种类的比例增加,尽管它们对亮菌素A的敏感性显著不同。膜磷脂向含有较短不饱和酰基链的PG的这种变化表明,耐药菌株的细胞膜流动性更大。在对亮菌素A和片球菌素PA-1均耐药的菌株(单核细胞增生李斯特菌412P)中存在这种现象,这可能表明在一些单核细胞增生李斯特菌菌株中,膜组成与IIa类细菌素耐药性之间存在联系。用去饱和酶抑制剂硬脂酸甲酯(SME)处理菌株,导致中等抗性菌株对亮菌素A的敏感性发生显著变化,但高抗性菌株的敏感性没有变化。然而,在一株中等抗性菌株和两株高抗性菌株中,用SME处理后,不饱和和短酰基链PG的量减少,但敏感菌株则观察到相反的效果。因此,膜适应性可能是耐药机制的一部分,但几种耐药机制可能导致耐药表型,并且耐药水平根据存在的机制类型而有所不同。

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