Departamento de Veterinária, Universidade Federal de Viçosa, Campus UFV, Viçosa, MG, 36570-900, Brazil.
Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, Av. Prof. Lineu Prestes, 580, São Paulo, SP, 05508-000, Brazil.
Braz J Microbiol. 2019 Apr;50(2):369-377. doi: 10.1007/s42770-019-00068-4. Epub 2019 Mar 9.
The bacteriocinogenic Enterococcus hirae ST57ACC recently isolated from a Brazilian artisanal cheese was subjected here to additional analyses in order to evaluate its bacteriocin production and the potential influence of ABC transporter system in its expression. Besides these physiological and molecular aspects, the bacteriocin was evaluated for its cytotoxicity against HT-29. Differences in the inoculum size had no impact on the growth of E. hirae ST57ACC; however, the bacteriocin was only produced after 9 h of growth when the strain was inoculated at 5% or 10% (v/v), with similar levels of bacteriocin production obtained by both conventional growth and batch fermentation. Furthermore, potential expression of ABC transporters corresponding to the bacteriocin transport and sugar metabolism was identified. In terms of adverse effects, when a semi-purified fraction of the bacteriocin and the cell-free supernatant were tested against HT-29, total cell viability was similar to observed on untreated cells, indicating the absence of cytotoxic effect. Based on the obtained results, E. hirae ST57ACC can produce its bacteriocin at industrial level by using bioreactors, its bacteriocin expression is potentially influenced by the ABC transporter system, and no cytotoxic effects were observed on HT-29 cells, indicating its potential use as a bio-preservative.
最近从巴西传统奶酪中分离出来的产细菌素屎肠球菌 ST57ACC 在这里进行了进一步的分析,以评估其细菌素的产生和 ABC 转运蛋白系统对其表达的潜在影响。除了这些生理和分子方面,还评估了细菌素对 HT-29 的细胞毒性。接种量的差异对屎肠球菌 ST57ACC 的生长没有影响;然而,当菌株以 5%或 10%(v/v)接种时,在生长 9 小时后才会产生细菌素,通过常规生长和分批发酵都可以获得相似水平的细菌素产生。此外,还鉴定了与细菌素运输和糖代谢相关的 ABC 转运蛋白的潜在表达。就不良影响而言,当测试半纯化的细菌素部分和无细胞上清液对 HT-29 时,总细胞活力与未处理细胞相似,表明没有细胞毒性作用。基于获得的结果,屎肠球菌 ST57ACC 可以通过使用生物反应器在工业水平上生产其细菌素,其细菌素表达可能受到 ABC 转运蛋白系统的影响,并且在 HT-29 细胞上未观察到细胞毒性作用,表明其作为生物防腐剂的潜在用途。