Carboni Gavino, Marova Ivana, Zara Giacomo, Zara Severino, Budroni Marilena, Mannazzu Ilaria
Department of Agricultural Sciences, University of Sassari, Viale Italia 39, 07100 Sassari, Italy.
Faculty of Chemistry, Brno University of Technology, Purkyňova 464/118, Královo Pole, 61200 Brno, Czech Republic.
Foods. 2021 Mar 8;10(3):556. doi: 10.3390/foods10030556.
The soil yeast secretes a killer toxin, named Kpkt, that shows β-glucanase activity and is lethal to wine spoilage yeasts belonging to , and . When expressed in , recombinant Kpkt displays a wider spectrum of action as compared to its native counterpart, being active on a vast array of wine yeasts and food-related bacteria. Here, to gather information on recombinant Kpkt cytotoxicity, lyophilized preparations of this toxin (LrKpkt) were obtained and tested on immortalized human keratinocyte HaCaT cells, a model for the stratified squamous epithelium of the oral cavity and esophagus. LrKpkt proved harmless to HaCaT cells at concentrations up to 36 AU/mL, which are largely above those required to kill food-related yeasts and bacteria in vitro (0.25-2 AU/mL). At higher concentrations, it showed a dose dependent effect that was comparable to that of the negative control and therefore could be ascribed to compounds, other than the toxin, occurring in the lyophilized preparations. Considering the dearth of studies regarding the effects of yeast killer toxins on human cell lines, these results represent a first mandatory step towards the evaluation the possible risks associated to human intake. Moreover, in accordance with that observed on and , they support the lack of toxicity of this toxin on non-target eukaryotic models and corroborate the possible exploitation of killer toxins as natural antimicrobials in the food and beverages industries.
土壤酵母分泌一种名为Kpkt的杀伤毒素,该毒素具有β-葡聚糖酶活性,对属于酒香酵母属、接合酵母属和毕赤酵母属的葡萄酒腐败酵母具有致死性。当在酿酒酵母中表达时,重组Kpkt与其天然对应物相比显示出更广泛的作用谱,对大量葡萄酒酵母和与食品相关的细菌具有活性。在此,为了收集有关重组Kpkt细胞毒性的信息,制备了这种毒素的冻干制剂(LrKpkt),并在永生化的人角质形成细胞HaCaT细胞上进行测试,HaCaT细胞是口腔和食管复层鳞状上皮的模型。LrKpkt在浓度高达36 AU/mL时对HaCaT细胞无害,该浓度大大高于体外杀死与食品相关的酵母和细菌所需的浓度(0.25-2 AU/mL)。在较高浓度下,它显示出与阴性对照相当的剂量依赖性效应,因此可能归因于冻干制剂中除毒素外的其他化合物。考虑到关于酵母杀伤毒素对人类细胞系影响的研究匮乏,这些结果是评估与人类摄入相关的潜在风险的第一步。此外,与在酿酒酵母和毕赤酵母上观察到的结果一致,它们支持这种毒素对非靶标真核模型无毒,并证实了杀伤毒素在食品和饮料行业作为天然抗菌剂可能的应用。