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基于结构、遗传学和生物活性对双组分羊毛硫抗生素乳酸乳球菌素3147和葡萄球菌素C55之间相关性的研究

Relatedness between the two-component lantibiotics lacticin 3147 and staphylococcin C55 based on structure, genetics and biological activity.

作者信息

O'Connor Eileen B, Cotter Paul D, O'Connor Paula, O'Sullivan Orla, Tagg John R, Ross R Paul, Hill Colin

机构信息

Moorepark Food Research Centre, Teagasc, Fermoy, Co., Cork, Ireland.

出版信息

BMC Microbiol. 2007 Apr 2;7:24. doi: 10.1186/1471-2180-7-24.

Abstract

BACKGROUND

Two component lantibiotics, such as the plasmid-encoded lacticin 3147 produced by Lactococcus lactis DPC3147 and staphylococcin C55 produced by Staphylococcus aureus C55, represent an emerging subgroup of bacteriocins. These two bacteriocins are particularly closely related, exhibiting 86% (LtnA1 and C55alpha) and 55% (LtnA2 and C55beta) identity in their component peptides. The aim of this study was to investigate, for the first time for any two component bacteriocins, the significance of the relatedness between these two systems.

RESULTS

So close is this relatedness that the hybrid peptide pairs LtnA1:C55beta and C55alpha:LtnA2 were found to have activities in the single nanomolar range, comparing well with the native pairings. To determine whether this flexibility extended to the associated post-translational modification/processing machinery, the staphylococcin C55 structural genes were directly substituted for their lacticin 3147 counterparts in the ltn operon on the large conjugative lactococcal plasmid pMRC01. It was established that the lacticin LtnA1 post-translational and processing machinery could produce functionally active C55alpha, but not C55beta. In order to investigate in closer detail the significance of the differences between LtnA1 and C55alpha, three residues in LtnA1 were replaced with the equivalent residues in C55alpha. Surprisingly, one such mutant LtnA1-Leu21Ala was not produced. This may be significant given the positioning of this residue in a putative lipid II binding loop.

CONCLUSION

It is apparent, despite sharing striking similarities in terms of structure and activity, that these two complex bacteriocins display some highly dedicated features particular to either system.

摘要

背景

双组分羊毛硫抗生素,如乳酸乳球菌DPC3147产生的质粒编码乳链菌肽3147和金黄色葡萄球菌C55产生的葡萄球菌素C55,代表了一类新兴的细菌素亚群。这两种细菌素关系尤为密切,其组成肽的同一性分别为86%(LtnA1和C55α)和55%(LtnA2和C55β)。本研究的目的是首次针对任何双组分细菌素,研究这两个系统之间相关性的意义。

结果

这种相关性非常紧密,以至于发现杂合肽对LtnA1:C55β和C55α:LtnA2具有单纳摩尔范围内的活性,与天然配对相当。为了确定这种灵活性是否扩展到相关的翻译后修饰/加工机制,将葡萄球菌素C55的结构基因直接替换大的接合型乳酸乳球菌质粒pMRC01上ltn操纵子中的乳链菌肽3147对应基因。已证实乳链菌肽LtnA1的翻译后和加工机制可产生功能活性的C55α,但不能产生C55β。为了更详细地研究LtnA1和C55α之间差异的意义,将LtnA1中的三个残基替换为C55α中的等效残基。令人惊讶的是,一个这样的突变体LtnA1-Leu21Ala没有产生。鉴于该残基在假定的脂质II结合环中的位置,这可能具有重要意义。

结论

显然,尽管这两种复杂的细菌素在结构和活性方面有显著相似之处,但它们显示出一些每个系统特有的高度专一的特征。

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