Department of Bioscience and Biotechnology, Faculty of Agriculture, Graduate School, Kyushu University, Motooka 744, Fukuoka 819-0395, Japan.
Department of Bioscience and Biotechnology, Faculty of Agriculture, Graduate School, Kyushu University, Motooka 744, Fukuoka 819-0395, Japan; National Institute of Molecular Biology and Biotechnology (BIOTECH), University of the Philippines Los Baños (UPLB), Los Baños, Laguna 4031, Philippines.
J Biosci Bioeng. 2020 Dec;130(6):596-603. doi: 10.1016/j.jbiosc.2020.07.017. Epub 2020 Aug 24.
EnkT is an ATP-binding cassette (ABC) transporter produced by Enterococcus faecium NKR-5-3, which is responsible for the secretion of multiple bacteriocins; enterocins NKR-5-3A, C, D, and Z (Ent53A, C, D, and Z). EnkT has been shown to possess a tolerant recognition mechanism that enables it to secrete the mature Ent53C from a chimeric precursor peptide containing the leader peptide moieties that are derived from different heterologous bacteriocins. In this study, to further characterize EnkT, we aimed to investigate the capacity of EnkT to recognize, process, and secrete non-cognate bacteriocins, which belong to different subclasses of class II. For this, the non-cognate bacteriocin precursor peptides, including enterocin A, pediocin PA-1, lactococcin Q, lactococcin A, and lacticin Q were co-expressed with EnkT, and thereafter, the production of the mature forms of these non-cognate bacteriocins was assessed. Our results revealed that EnkT could potentially recognize, process, and secrete the non-cognate bacteriocins with an exception of the leaderless bacteriocin, lacticin Q. Moreover, the processing and secretion efficiencies of these heterologous non-cognate bacteriocins by EnkT were further enhanced when the leader peptide moiety was replaced with the Ent53C leader peptide (derived from a native NKR-5-3 bacteriocin). The findings of this study describe the wide substrate tolerance of this ABC transporter, EnkT, that can be exploited in the future in establishing effective bacteriocin production systems adaptive to complex fermentation conditions common in many food systems.
EnkT 是屎肠球菌 NKR-5-3 产生的一种 ATP 结合盒(ABC)转运蛋白,负责多种细菌素的分泌;肠球菌素 NKR-5-3A、C、D 和 Z(Ent53A、C、D 和 Z)。研究表明,EnkT 具有宽容的识别机制,使其能够从包含来自不同异源细菌素的前导肽部分的嵌合前体肽中分泌成熟的 Ent53C。在这项研究中,为了进一步表征 EnkT,我们旨在研究 EnkT 识别、加工和分泌不属于同一 II 类亚类的非同源细菌素的能力。为此,将非同源细菌素前体肽,包括肠球菌素 A、肠球菌素 PA-1、乳球菌素 Q、乳球菌素 A 和乳球菌素 Q 与 EnkT 共表达,然后评估这些非同源细菌素成熟形式的产生。我们的结果表明,EnkT 可以潜在地识别、加工和分泌非同源细菌素,但无前导肽的细菌素乳球菌素 Q 除外。此外,当前导肽部分被 Ent53C 前导肽(源自天然 NKR-5-3 细菌素)取代时,EnkT 对这些异源非同源细菌素的加工和分泌效率进一步提高。这项研究的结果描述了这种 ABC 转运蛋白 EnkT 的广泛底物耐受性,未来可以在建立适应许多食品系统中常见的复杂发酵条件的有效细菌素生产系统中加以利用。