Sebei S, Zendo T, Boudabous A, Nakayama J, Sonomoto K
Department of Bioscience and Biotechnology, Faculty of Agriculture, Graduate School, Kyushu University, Fukuoka, Japan.
J Appl Microbiol. 2007 Nov;103(5):1621-31. doi: 10.1111/j.1365-2672.2007.03395.x.
To purify and characterize the bacteriocin produced by strain MRX1.
A bacteriocin-producing strain was isolated and identified as Bacillus cereus. The bacteriocin, called cerein MRX1, was purified from the culture supernatant using hydrophobic interaction, cation-exchange chromatography and RP-HPLC. It could also be purified in abundance from the cell surfaces of the producer strain. Mass spectrometry revealed its molecular mass of 3137.93 Da. Sequencing of chemically modified bacteriocin identified its partial sequence: DWTCWSCLVCAACSVELL. Amino acid analysis, confirmed by (1)H-NMR, suggested cerein MRX1 to be a class II bacteriocin. This bacteriocin was remarkably hydrophobic, heat-stable and could withstand a wide range of pH. It exhibited a bactericidal mode of action against Bacillus coagulans JCM 2257(T). Cerein MRX1 was especially active against spoilage bacteria such as Bacillus subtilis and Listeria innocua (MICs in the 1 microg ml(-1) range). In contrast, lactic acid bacteria were resistant or required higher concentrations to be inhibited.
Cerein MRX1 is similar by its N-terminal sequence to thuricin 17 recently isolated from Bacillus thuringiensis NEB17. However, the two bacteriocins are different by their molecular masses and amino acid compositions.
Chemical stability of cerein MRX1 and its ability to inhibit a large number of undesirable bacteria may give an advantage to its food or clinical application as an antibacterial agent.
纯化并鉴定MRX1菌株产生的细菌素。
分离出一株产细菌素的菌株,鉴定为蜡样芽孢杆菌。从培养上清液中利用疏水相互作用、阳离子交换色谱和反相高效液相色谱法纯化出名为cerein MRX1的细菌素。也可从产生菌的细胞表面大量纯化得到。质谱分析显示其分子量为3137.93 Da。对化学修饰的细菌素进行测序确定了其部分序列:DWTCWSCLVCAACSVELL。氨基酸分析经(1)H-NMR证实,表明cerein MRX1为II类细菌素。这种细菌素具有显著的疏水性、热稳定性,能耐受较宽的pH范围。它对凝结芽孢杆菌JCM 2257(T)表现出杀菌作用方式。Cerein MRX1对枯草芽孢杆菌和无害李斯特菌等腐败菌特别有效(最低抑菌浓度在1微克/毫升范围内)。相比之下,乳酸菌具有抗性或需要更高浓度才能被抑制。
Cerein MRX1的N端序列与最近从苏云金芽孢杆菌NEB17分离出的thuricin 17相似。然而,这两种细菌素在分子量和氨基酸组成上有所不同。
Cerein MRX1的化学稳定性及其抑制大量有害细菌的能力可能使其作为抗菌剂在食品或临床应用中具有优势。