Zendo Takeshi, Ohashi Chihiro, Maeno Shintaro, Piao Xingguo, Salminen Seppo, Sonomoto Kenji, Endo Akihito
Department of Bioscience and Biotechnology, Faculty of Agriculture, Graduate School, Kyushu University, Fukuoka, Japan.
Department of Food, Aroma and Cosmetic Chemistry, Faculty of Bioindustry, Tokyo University of Agriculture, Hokkaido, Japan.
Front Microbiol. 2020 Sep 16;11:571903. doi: 10.3389/fmicb.2020.571903. eCollection 2020.
FF30-6 isolated from healthy honey bees synthesizes the bacteriocin, which exhibits antimicrobial activity against . The bacteriocin, kunkecin A, was purified through three-step chromatography, and mass spectrometry revealed that its relative molecular mass was 4218.3. Edman degradation of purified kunkecin A showed only the N-terminal residue, isoleucine. Hence, alkaline alkylation made the subsequent amino acid residues accessible to Edman degradation, and 30 cycles were sequenced with 11 unidentified residues. Whole genome sequencing of FF30-6, followed by Sanger sequencing, revealed that the genes encoding the proteins involved in lantibiotic biosynthesis were within the plasmid, pKUNFF30-6. Most of the identified proteins exhibited significant sequence similarities to the biosynthetic proteins of nisin A and its variants, such as subtilin. However, the kunkecin A gene cluster lacked the genes corresponding to , , and of the nisin A biosynthetic gene cluster. A comparison of the gene products of and (kunkecin A and nisin A structural genes, respectively) suggested that they had similar post-translational modifications. Furthermore, the structure of kunkecin A was proposed based on a comparison of the observed and calculated relative molecular masses of kunkecin A. The structural analysis revealed that kunkecin A and nisin A had a similar mono-sulfide linkage pattern. Purified kunkecin A exhibited a narrow antibacterial spectrum, but high antibacterial activity against . Kunkecin A is the first bacteriocin to be characterized in fructophilic lactic acid bacteria and is the first nisin-type lantibiotic found in the family .
从健康蜜蜂中分离出的FF30-6能合成对……具有抗菌活性的细菌素。该细菌素昆克菌素A通过三步色谱法纯化,质谱分析显示其相对分子质量为4218.3。对纯化的昆克菌素A进行埃德曼降解仅显示出N端残基异亮氨酸。因此,碱性烷基化使后续氨基酸残基可用于埃德曼降解,并对30个循环进行了测序,有11个未鉴定残基。对FF30-6进行全基因组测序,随后进行桑格测序,结果表明参与羊毛硫抗生素生物合成的蛋白质编码基因位于质粒pKUNFF30-6中。大多数已鉴定的蛋白质与乳酸链球菌素A及其变体(如枯草菌素)的生物合成蛋白质具有显著的序列相似性。然而,昆克菌素A基因簇缺乏与乳酸链球菌素A生物合成基因簇的……相对应的基因。对……和……(分别为昆克菌素A和乳酸链球菌素A结构基因)的基因产物进行比较表明,它们具有相似的翻译后修饰。此外,基于对昆克菌素A观察到的和计算出的相对分子质量的比较,提出了昆克菌素A的结构。结构分析表明,昆克菌素A和乳酸链球菌素A具有相似的单硫键连接模式。纯化的昆克菌素A显示出较窄的抗菌谱,但对……具有高抗菌活性。昆克菌素A是在嗜果糖乳酸菌中首次被表征的细菌素,也是在……家族中发现的首个乳酸链球菌素型羊毛硫抗生素。