Mazhar Shahneela, Khokhlova Ekaterina, Colom Joan, Simon Annie, Deaton John, Rea Kieran
Deerland Ireland R&D Ltd., ADM, Food Science Building, University College Cork, Cork, Ireland.
Deerland Probiotics and Enzymes, ADM, Kennesaw, GA, United States.
Front Microbiol. 2023 Jan 13;13:1101144. doi: 10.3389/fmicb.2022.1101144. eCollection 2022.
DE111 is a safe, well-tolerated commercially available spore-forming probiotic that has been clinically shown to support a healthy gut microbiome, and to promote digestive and immune health in both adults and children. Recently it was shown that this spore-forming probiotic was capable of germinating in the gastrointestinal tract as early as 3 h after ingestion. However, a better understanding of the mechanisms involved in the efficacy of DE111 is required. Therefore, the present investigation was undertaken to elucidate the functional properties of DE111 through employing a combination of functional assays and genome analysis. DE111 genome mining revealed the presence of several genes encoding acid and stress tolerance mechanisms in addition to adhesion proteins required to survive and colonize harsh gastrointestinal environment including multi subunit ATPases, arginine deiminase (ADI) pathway genes (), stress (GroES/GroEL and DnaK/DnaJ) and extracellular polymeric substances (EPS) biosynthesis genes (). DE111 harbors several genes encoding enzymes involved in the metabolism of dietary molecules (protease, lipases, and carbohyrolases), antioxidant activity and genes associated with the synthesis of several B-vitamins (thiamine, riboflavin, pyridoxin, biotin, and folate), vitamin K2 (menaquinone) and seven amino acids including five essential amino acids (threonine, tryptophan, methionine, leucine, and lysine). Furthermore, a combined analysis of bacteriocin producing genes with analysis highlighted a broad antagonistic activity of DE111 toward numerous urinary tract, intestinal, and skin pathogens. Enzymatic activities included proteases, peptidases, esterase's, and carbohydrate metabolism coupled with metabolomic analysis of DE111 fermented ultra-high temperature milk, revealed a high release of amino acids and beneficial short chain fatty acids (SCFAs). Together, this study demonstrates the genetic and phenotypic ability of DE111 for surviving harsh gastric transit and conferring health benefits to the host, in particular its efficacy in the metabolism of dietary molecules, and its potential to generate beneficial SCFAs, casein-derived bioactive peptides, as well as its high antioxidant and antimicrobial potential. Thus, supporting the use of DE111 as a nutrient supplement and its pottential use in the preparation of functional foods.
DE111是一种安全、耐受性良好的市售产芽孢益生菌,临床研究表明它有助于维持健康的肠道微生物群,并促进成人和儿童的消化及免疫健康。最近有研究表明,这种产芽孢益生菌在摄入后3小时就能在胃肠道中萌发。然而,我们还需要更好地了解DE111发挥功效的机制。因此,本研究通过功能测定和基因组分析相结合的方法,来阐明DE111的功能特性。对DE111的基因组挖掘发现,除了在恶劣的胃肠道环境中生存和定殖所需的粘附蛋白外,还存在几个编码酸和应激耐受机制的基因,包括多亚基ATP酶、精氨酸脱亚氨酶(ADI)途径基因、应激(GroES/GroEL和DnaK/DnaJ)以及胞外聚合物(EPS)生物合成基因。DE111含有几个编码参与膳食分子代谢的酶(蛋白酶、脂肪酶和碳水化合物酶)、抗氧化活性的基因,以及与几种B族维生素(硫胺素、核黄素、吡哆醇、生物素和叶酸)、维生素K2(甲萘醌)和七种氨基酸(包括五种必需氨基酸:苏氨酸、色氨酸、蛋氨酸、亮氨酸和赖氨酸)合成相关的基因。此外,对产细菌素基因与……分析的联合分析突出了DE111对多种泌尿道、肠道和皮肤病原体具有广泛的拮抗活性。酶活性包括蛋白酶、肽酶、酯酶和碳水化合物代谢,再结合对DE111发酵超高温灭菌牛奶的代谢组学分析,结果显示有大量氨基酸和有益短链脂肪酸(SCFA)释放。总之,本研究证明了DE111在恶劣的胃部转运过程中存活并为宿主带来健康益处的遗传和表型能力,特别是其在膳食分子代谢方面的功效,以及产生有益SCFA、酪蛋白衍生生物活性肽的潜力,及其高抗氧化和抗菌潜力。因此,支持将DE111用作营养补充剂以及其在功能性食品制备中的潜在用途。