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乳球菌素A以一种不依赖电压、蛋白质介导的方式特异性增加乳球菌细胞质膜的通透性。

The bacteriocin lactococcin A specifically increases permeability of lactococcal cytoplasmic membranes in a voltage-independent, protein-mediated manner.

作者信息

van Belkum M J, Kok J, Venema G, Holo H, Nes I F, Konings W N, Abee T

机构信息

Department of Genetics, University of Groningen, Haren, The Netherlands.

出版信息

J Bacteriol. 1991 Dec;173(24):7934-41. doi: 10.1128/jb.173.24.7934-7941.1991.

DOI:10.1128/jb.173.24.7934-7941.1991
PMID:1744049
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC212587/
Abstract

Lactococcin A is a bacteriocin produced by Lactococcus lactis. Its structural gene has recently been cloned and sequenced (M. J. van Belkum, B. J. Hayema, R. E. Jeeninga, J. Kok, and G. Venema, Appl. Environ. Microbiol. 57:492-498, 1991). Purified lactococcin A increased the permeability of the cytoplasmic membrane of L. lactis and dissipated the membrane potential. A significantly higher concentration of lactococcin A was needed to dissipate the membrane potential in an immune strain of L. lactis. Lactococcin A at low concentrations (0.029 microgram/mg of protein) inhibited secondary and phosphate-bond driven transport of amino acids in sensitive cells and caused efflux of preaccumulated amino acids. Accumulation of amino acids by immune cells was not affected by this concentration of lactococcin A. Lactococcin A also inhibited proton motive force-driven leucine uptake and leucine counterflow in membrane vesicles of the sensitive strain but not in membrane vesicles of the immune strain. These observations indicate that lactococcin A makes the membrane permeable for leucine in the presence or absence of a proton motive force and that the immunity factor(s) is membrane linked. Membrane vesicles of Clostridium acetobutylicum, Bacillus subtilis, and Escherichia coli were not affected by lactococcin A, nor were liposomes derived from phospholipids of L. lactis. These results indicate that lactococcin A acts on the cytoplasmic membrane and is very specific towards lactococci. The combined results obtained with cells, vesicles, and liposomes suggest that the specificity of lactococcin A may be mediated by a receptor protein associated with the cytoplasmic membrane.

摘要

乳球菌素A是乳酸乳球菌产生的一种细菌素。其结构基因最近已被克隆和测序(M. J. 范·贝尔库姆、B. J. 哈耶马、R. E. 杰宁加、J. 科克和G. 韦内马,《应用与环境微生物学》57:492 - 498,1991年)。纯化的乳球菌素A增加了乳酸乳球菌细胞质膜的通透性,并使膜电位消散。在乳酸乳球菌的免疫菌株中,需要显著更高浓度的乳球菌素A才能使膜电位消散。低浓度(0.029微克/毫克蛋白质)的乳球菌素A抑制敏感细胞中氨基酸的二级和磷酸键驱动转运,并导致预积累氨基酸的外流。该浓度的乳球菌素A不影响免疫细胞对氨基酸的积累。乳球菌素A还抑制敏感菌株膜囊泡中质子动力驱动的亮氨酸摄取和亮氨酸逆流,但不影响免疫菌株膜囊泡中的这些过程。这些观察结果表明,无论是否存在质子动力,乳球菌素A都能使膜对亮氨酸具有通透性,并且免疫因子与膜相连。丙酮丁醇梭菌、枯草芽孢杆菌和大肠杆菌的膜囊泡不受乳球菌素A的影响,乳酸乳球菌磷脂衍生的脂质体也不受影响。这些结果表明,乳球菌素A作用于细胞质膜,并且对乳球菌具有高度特异性。在细胞、囊泡和脂质体上获得的综合结果表明,乳球菌素A的特异性可能由与细胞质膜相关的受体蛋白介导。

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