Dipartimento di Protezione delle Piante e Microbiologia Applicata, Università degli Studi di Bari, Bari, Italy.
Proteomics. 2010 Jun;10(11):2175-90. doi: 10.1002/pmic.200900565.
This work aimed at showing the effect of pheromone plantaricin A (PlnA) by Lactobacillus plantarum DC400 towards other sourdough lactic acid bacteria and the potential of PlnA to protect the function of the human intestinal barrier. Growth and survival of sourdough lactic acid bacteria were differently affected by co-cultivation with L. plantarum DC400. Compared to mono-cultures, Lactobacillus sanfranciscensis DPPMA174 and Pediococcus pentosaceus 2XA3 showed growth inhibition and decreased viability when co-cultured with L. plantarum DC400. L. sanfranciscensis DPPMA174 induced the highest synthesis of PlnA. Survival of strain DPPMA174 only slightly varied by comparing the addition of PlnA to the culture medium and the co-cultivation with L. plantarum DC400. Compared to mono-culture, the proteome of L. sanfranciscensis DPPMA174 grown in co-culture with L. plantarum DC400 showed the variation of expression of 58 proteins (47 over expressed and 11 repressed). Thirty-four of them were also over expressed or repressed during growth of DPPMA174 with PlnA. Fifty-one of the above 58 proteins were identified. They had a central role in stress response, amino acid, energy and nucleotide metabolisms, membrane transport, regulation of transcription, and cell redox homeostasis. PlnA markedly increased the viability of human Caco-2/TC7 cells and the transepithelial electrical resistance.
本研究旨在展示植物乳杆菌 DC400 所产生的信息素 plantaricin A (PlnA) 对其他酸面团乳酸菌的影响,以及 PlnA 保护人类肠道屏障功能的潜力。与植物乳杆菌 DC400 共培养会对酸面团乳酸菌的生长和存活产生不同的影响。与单培养相比,旧金山乳杆菌 DPPMA174 和戊糖片球菌 2XA3 的生长受到抑制,活力降低。当与植物乳杆菌 DC400 共培养时,旧金山乳杆菌 DPPMA174 诱导产生的 PlnA 最多。与添加 PlnA 到培养基中和与植物乳杆菌 DC400 共培养相比,菌株 DPPMA174 的存活情况变化不大。与单培养相比,在与植物乳杆菌 DC400 共培养时,旧金山乳杆菌 DPPMA174 的蛋白质组显示出 58 种蛋白质的表达变化(47 种表达上调,11 种表达下调)。在 DPPMA174 与 PlnA 共培养或单独生长时,其中 34 种蛋白质也表达上调或下调。在上述 58 种蛋白质中,有 51 种被鉴定出来。它们在应激反应、氨基酸、能量和核苷酸代谢、膜转运、转录调节以及细胞氧化还原稳态中起着核心作用。PlnA 显著提高了人 Caco-2/TC7 细胞的活力和跨上皮电阻。