...
首页> 外文期刊>Probiotics and Antimicrobial Proteins >Mechanism of nisin, pediocin 34, and enterocin FH99 resistance in Listeria monocytogenes.
【24h】

Mechanism of nisin, pediocin 34, and enterocin FH99 resistance in Listeria monocytogenes.

机译:乳链菌菌素,pediocin 34和肠单胞菌FH99对单核细胞增生性李斯特菌的抗性机制。

获取原文
获取原文并翻译 | 示例

摘要

Nisin-, pediocin 34-, and enterocin FH99-resistant variants of Listeria monocytogenes ATCC 53135 were developed. In an attempt to clarify the possible mechanisms underlying bacteriocin resistance in L. monocytogenes ATCC 53135, sensitivity of the resistant strains of L. monocytogenes ATCC 53135 to nisin, pediocin 34, and enterocin FH99 in the absence and presence of different divalent cations was assessed, and the results showed that the addition of divalent cations significantly reduced the inhibitory activity of nisin, pediocin 34, and enterocin FH99 against resistant variants of L. monocytogenes ATCC 53135. The addition of EDTA, however, restored this activity suggesting that the divalent cations seem to affect the initial electrostatic interaction between the positively charged bacteriocin and the negatively charged phospholipids of the membrane. Nisin-, pediocin 34-, and enterocin-resistant variants of L. monocytogenes ATCC 53135 were more resistant to lysozyme as compared to the wild-type strain both in the presence as well as absence of nisin, pediocin 34, and enterocin FH99. Ultra structural profiles of bacteriocin-sensitive L. monocytogenes and its bacteriocin-resistant counterparts revealed that the cells of wild-type strain of L. monocytogenes were maximally in pairs or short chains, whereas, its nisin-, pediocin 34-, and enterocin FH99-resistant variants tend to form aggregates. Results indicated that without a cell wall, the acquired nisin, pediocin 34, and enterocin FH99 resistance of the variants was lost. Although the bacteriocin-resistant variants appeared to lose their acquired resistance toward nisin, pediocin 34, and enterocin FH99, the protoplasts of the resistant variants appeared to be more resistant to bacteriocins than the protoplasts of their wild-type counterparts. copyright Springer Science + Business Media, LLC 2011.
机译:开发了单核细胞增生性李斯特菌ATCC 53135的乳链菌肽,pediocin 34和肠球菌FH99耐药株。为了试图阐明L中细菌素抗性的潜在机制。单核细胞增生病 ATCC 53135,对 L抗性菌株的敏感性。评估了在不存在和存在不同二价阳离子的情况下单核细胞增生因子ATCC 53135对乳链菌肽,pediocin 34和肠球菌素FH99的影响,结果表明,添加二价阳离子会大大降低乳链菌肽,pediocin 34和肠球菌素FH99对抗L型抗性变体。单核细胞增生性细菌ATCC53135。但是,加入EDTA可以恢复这种活性,表明二价阳离子似乎会影响带正电的细菌素和带负电的磷脂之间的初始静电相互作用。 L的乳酸链球菌素,pediocin 34和肠球菌抗性变体。在存在和不存在乳链菌肽,pediocin 34和肠球菌素FH99的情况下,与野生型菌株相比,单核细胞增生因子ATCC 53135对溶菌酶的抵抗力更高。细菌素敏感的L的超结构特征。单核细胞增生病及其对细菌素的耐药性揭示了野生型 L菌株的细胞。单核细胞增生病最大成对或短链,而其乳酸链球菌素,pediocin 34和肠球菌FH99耐药变体趋于形成聚集体。结果表明,在没有细胞壁的情况下,变体的获得的乳链菌肽,pediocin 34和肠球菌素FH99抗性丧失。尽管抗细菌素的变体似乎失去了对乳链菌肽,pediocin 34和肠球菌素FH99的获得性抗性,但抗性变体的原生质体似乎比其野生型对应物的原生质体对细菌素具有更强的抗性。版权所有Springer Science + Business Media,LLC 2011。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号