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两种新的分泌型蛋白酶在食源分离株中产生一种酪蛋白衍生的抗菌肽,导致牛奶中的细菌竞争。

Two New Secreted Proteases Generate a Casein-Derived Antimicrobial Peptide in Food Born Isolate Leading to Bacterial Competition in Milk.

作者信息

Ouertani Awatef, Chaabouni Ines, Mosbah Amor, Long Justine, Barakat Mohamed, Mansuelle Pascal, Mghirbi Olfa, Najjari Afef, Ouzari Hadda-Imene, Masmoudi Ahmed S, Maresca Marc, Ortet Philippe, Gigmes Didier, Mabrouk Kamel, Cherif Ameur

机构信息

Université de la Manouba, ISBST, BVBGR-LR11ES31, Biotechpole Sidi Thabet, Ariana, Tunisia.

Aix Marseille University, Centre National de la Recherche Scientifique, ICR UMR 7273, Marseille, France.

出版信息

Front Microbiol. 2018 Jun 4;9:1148. doi: 10.3389/fmicb.2018.01148. eCollection 2018.

Abstract

Milk and dairy products harbor a wide variety of bacterial species that compete for both limited resources and space. Under these competitive conditions, bacteria develop specialized mechanisms to protect themselves during niche colonization and nutrient acquisition processes. The bacterial antagonism mechanisms include the production of antimicrobial agents or molecules that facilitate competitor dispersal. In the present work, a bacterial strain designated RC6 was isolated from Ricotta and identified as . It generates antimicrobial peptide (AMP) when grown in the presence of casein. The AMP was active against several species of and . MALDI-TOF analysis of the RP-HPLC purified fractions and amino acid sequencing revealed a molecular mass of 751 Da comprised of a 6-residue sequence, YPVEPF. BLAST analysis showed that the AMP corresponds to the fractions 114-119 of bovine β-casein and represents the product of a specific proteolysis. Analysis of the purified proteolytic fractions from the RC6 culture supernatant indicated that the presence of at least two different endoproteases is crucial for the generation of the AMP. Indeed, we were able to identify two new candidate endoproteases by means of genome sequencing and functional assignment using a 3D structural model and molecular docking of misannotated hypothetical proteins. In this light, the capacity of RC6 to generate antimicrobial peptides from casein, through the production of extracellular enzymes, presents a new model of antagonistic competition leading to niche colonization. Hence, as a dairy product contaminant, this strategy may enable proteolytic RC6 niche specialization in milk matrices.

摘要

牛奶和乳制品中存在各种各样的细菌物种,它们会争夺有限的资源和空间。在这些竞争条件下,细菌会形成特殊的机制,以便在生态位定殖和养分获取过程中保护自己。细菌的拮抗机制包括产生抗菌剂或促进竞争者扩散的分子。在本研究中,从意大利乳清干酪中分离出一株名为RC6的细菌,并鉴定为[具体细菌名称未给出]。当在酪蛋白存在的情况下生长时,它会产生抗菌肽(AMP)。该AMP对几种[具体细菌种类未给出]和[具体细菌种类未给出]具有活性。对RP-HPLC纯化组分的MALDI-TOF分析和氨基酸测序显示,其分子量为751 Da,由六肽序列YPVEPF组成。BLAST分析表明,该AMP对应于牛β-酪蛋白的114-119片段,是特定蛋白水解的产物。对RC6培养上清液中纯化的蛋白水解组分的分析表明,至少两种不同的内切蛋白酶的存在对于AMP的产生至关重要。实际上,我们能够通过基因组测序以及使用错误注释的假设蛋白的3D结构模型和分子对接进行功能分配,鉴定出两种新的候选内切蛋白酶。有鉴于此,RC6通过产生细胞外酶从酪蛋白生成抗菌肽的能力,呈现了一种导致生态位定殖的拮抗竞争新模式。因此,作为一种乳制品污染物,这种策略可能使蛋白水解性的RC6在牛奶基质中实现生态位特化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0435/5994558/af110283ead9/fmicb-09-01148-g0001.jpg

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