Koniuchovaitė Ana, Petkevičiūtė Akvilė, Bernotaitė Emilija, Gricajeva Alisa, Gegeckas Audrius, Kalėdienė Lilija, Kaunietis Arnoldas
Department of Microbiology and Biotechnology, Institute of Biosciences, Life Sciences Center, Vilnius University, Vilnius, Lithuania.
Front Microbiol. 2023 Jun 15;14:1207367. doi: 10.3389/fmicb.2023.1207367. eCollection 2023.
Bacterial resistance to conventional antibiotics has urged us to develop alternative strategies against bacterial pathogens. Moreover, a demand for food products containing no chemical preservatives has led us to search for new alternative technologies for food preservation. Bacteriocins - ribosomally synthesized antimicrobial peptides - have been proposed as a new alternative to conventional antibiotics or chemicals for food preservation. This study describes biosynthesis and characterization of a novel leaderless bacteriocin, geobacillin 6, which was identified in the thermophilic bacterium Its amino acid sequence shows low similarity to other bacteriocins and it is the first leaderless-type bacteriocin identified in thermophilic bacteria. Based on structure assessment, the bacteriocin forms a multi-helix bundle. Geobacillin 6 exhibits a relatively narrow antimicrobial spectrum, it is active in the μM range and against Gram-positive bacteria, mostly thermophilic species closely related to the producer strain. Bacteriocin demonstrates stability over pH 3-11 and is highly thermostable, retaining 100% of its activity after incubation at 95°C for 6 h. Geobacillin 6 has potential in the food industry and biotechnological processes where contamination with thermophilic bacteria is undesirable.
细菌对传统抗生素的耐药性促使我们开发针对细菌病原体的替代策略。此外,对不含化学防腐剂的食品的需求促使我们寻找新的食品保鲜替代技术。细菌素——核糖体合成的抗菌肽——已被提议作为传统抗生素或化学物质用于食品保鲜的新替代品。本研究描述了一种新型无前导肽细菌素地芽孢杆菌素6的生物合成与特性,该细菌素是在嗜热细菌中鉴定出来的。其氨基酸序列与其他细菌素的相似性较低,并且它是在嗜热细菌中鉴定出的首个无前导肽型细菌素。基于结构评估,该细菌素形成多螺旋束。地芽孢杆菌素6表现出相对较窄的抗菌谱,在微摩尔范围内有活性,且针对革兰氏阳性菌,主要是与产生菌株密切相关的嗜热菌种。该细菌素在pH 3至11范围内表现出稳定性,并且具有高度热稳定性,在95°C孵育6小时后仍保留100%的活性。地芽孢杆菌素6在食品工业和生物技术过程中具有潜力,在这些过程中,嗜热细菌的污染是不可取的。