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乳球菌 GarML 基因簇的功能遗传分析为环形细菌素生物合成提供了新的见解。

Functional genetic analysis of the GarML gene cluster in Lactococcus garvieae DCC43 gives new insights into circular bacteriocin biosynthesis.

机构信息

Department of Chemistry, Biotechnology and Food Science, Laboratory of Microbial Gene Technology and Food Microbiology, Norwegian University of Life Sciences (UMB), Ås, Norway.

出版信息

J Bacteriol. 2014 Mar;196(5):911-9. doi: 10.1128/JB.01115-13. Epub 2013 Dec 13.

Abstract

Garvicin ML (GarML) is a circular bacteriocin produced by Lactococcus garvieae DCC43. The recently published draft genome of this strain allowed determination of the genetic background for bacteriocin production. Bioinformatic analysis identified a gene cluster consisting of nine open reading frames likely involved in the production of and immunity to GarML. The garA gene encodes the bacteriocin precursor, garX a large transmembrane protein, garBCDE a putative immunity protein (garB) followed by an ATPase and two transmembrane proteins, and garFGH a putative ABC transporter complex. Functional genetic analysis revealed that deletion of garFGH had no effect on sensitivity to or production of GarML. In contrast, deletion of garBCDE or inactivation of garX resulted in high-level sensitivity to GarML and completely abolished production of active bacteriocin. Mass spectrometry of culture supernatants revealed that wild-type cultures contained the mature circular form as well as the linear forms of the bacteriocin, both with and without the three-amino-acid leader sequence, while bacteriocin-negative mutants contained only the linear forms. These results indicate that cleavage of the leader peptide precedes circularization and is likely performed by a functional entity separate from the GarML gene cluster. To our knowledge, this is the first conclusive evidence for these processes being separated in time. Loss of immunity and antimicrobial activity in addition to our inability to detect the circular bacteriocin in the ΔgarBCDE and garX::pCG47 mutants demonstrate that both these units are indispensable for GarML biosynthesis as well as immunity. Furthermore, the results indicate that these genes are implicated in the circularization of the bacteriocin and that their functions are probably interlinked.

摘要

Garvicin ML(GarML)是由乳球菌 garvieae DCC43 产生的一种环形细菌素。该菌株最近公布的草案基因组允许确定细菌素产生的遗传背景。生物信息学分析鉴定了一个由九个开放阅读框组成的基因簇,这些基因可能参与 GarML 的产生和免疫。garA 基因编码细菌素前体,garX 是一种大的跨膜蛋白,garBCDE 是一种假定的免疫蛋白(garB),其后是一个 ATP 酶和两个跨膜蛋白,garFGH 是一种假定的 ABC 转运体复合物。功能遗传分析表明,garFGH 的缺失对 GarML 的敏感性或产生没有影响。相比之下,garBCDE 的缺失或 garX 的失活导致对 GarML 的高度敏感性,并完全消除了活性细菌素的产生。培养上清液的质谱分析表明,野生型培养物含有成熟的环形形式以及线性形式的细菌素,无论是带有还是不带有三氨基酸前导序列,而细菌素阴性突变体仅含有线性形式。这些结果表明,前导肽的切割先于环化,并且可能由与 GarML 基因簇分离的功能实体进行。据我们所知,这是首次对这些过程在时间上分离的明确证据。丧失免疫和抗菌活性,以及我们无法在Δ garBCDE 和 garX::pCG47 突变体中检测到环形细菌素,表明这两个单位对于 GarML 的生物合成以及免疫都是必不可少的。此外,结果表明这些基因参与了细菌素的环化,并且它们的功能可能相互关联。

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