产胞外多糖的ASCC 1275对牛奶发酵条件响应的功能基因组分析
Functional Genomic Analyses of Exopolysaccharide-Producing ASCC 1275 in Response to Milk Fermentation Conditions.
作者信息
Wu Qinglong, Chu Hung, Padmanabhan Aparna, Shah Nagendra P
机构信息
School of Biological Sciences, The University of Hong Kong, Pokfulam, Hong Kong.
Texas Children's Microbiome Center, Department of Pathology, Texas Children's Hospital, Houston, TX, United States.
出版信息
Front Microbiol. 2019 Aug 23;10:1975. doi: 10.3389/fmicb.2019.01975. eCollection 2019.
Exopolysaccharide (EPS) produced from dairy bacteria improves texture and functionalities of fermented dairy foods. Our previous study showed improved EPS production from ASCC1275 (ST1275) by simple alteration of fermentation conditions such as pH decrease (pH 6.5 → pH 5.5), temperature increase (37°C → 40°C) and/or whey protein isolate (WPI) supplementation. The iTRAQ-based proteomics in combination with transcriptomics were applied to understand cellular protein expression in ST1275 in response to above shifts during milk fermentation. The pH decrease induced the most differentially expressed proteins (DEPs) that are involved in cellular metabolic responses including glutamate catabolism, arginine biosynthesis, cysteine catabolism, purine metabolism, lactose uptake, and fatty acid biosynthesis. Temperature increase and WPI supplementation did not induce much changes in global protein express profiles of ST1275 between comparisons of pH 5.5 conditions. Comparative proteomic analyses from pairwise comparisons demonstrated enhanced glutamate catabolism and purine metabolism under pH 5.5 conditions (Cd2, Cd3, and Cd4) compared to that of pH 6.5 condition (Cd1). Concordance analysis for differential expressed genes (DEGs) and DEPs highlighted down-regulated glutamate catabolism and up-regulated arginine biosynthesis in pH 5.5 conditions. Down regulation of glutamate catabolism was also confirmed by pathway enrichment analysis. Down-regulation of EpsB involved in EPS assembly was observed at both mRNA and protein level in pH 5.5 conditions compared to that in pH 6.5 condition. Medium pH decreased to mild acidic level induced cellular changes associated with glutamate catabolism, arginine biosynthesis and regulation of EPS assembly in ST1275.
由乳杆菌产生的胞外多糖(EPS)可改善发酵乳制品的质地和功能。我们之前的研究表明,通过简单改变发酵条件,如降低pH值(pH 6.5 → pH 5.5)、升高温度(37°C → 40°C)和/或添加乳清蛋白分离物(WPI),可提高ASCC1275(ST1275)的EPS产量。基于iTRAQ的蛋白质组学与转录组学相结合,用于了解ST1275在牛奶发酵过程中对上述变化的细胞蛋白质表达情况。pH值降低诱导了参与细胞代谢反应的差异表达蛋白(DEP)最多,这些反应包括谷氨酸分解代谢、精氨酸生物合成、半胱氨酸分解代谢、嘌呤代谢、乳糖摄取和脂肪酸生物合成。在pH 5.5条件的比较中,温度升高和WPI添加并未引起ST1275整体蛋白质表达谱的太大变化。成对比较的比较蛋白质组分析表明,与pH 6.5条件(Cd1)相比,pH 5.5条件(Cd2、Cd3和Cd4)下谷氨酸分解代谢和嘌呤代谢增强。差异表达基因(DEG)和DEP的一致性分析突出了pH 5.5条件下谷氨酸分解代谢下调和精氨酸生物合成上调。谷氨酸分解代谢的下调也通过通路富集分析得到证实。与pH 6.5条件相比,在pH 5.5条件下,参与EPS组装的EpsB在mRNA和蛋白质水平均下调。培养基pH值降至轻度酸性水平会诱导ST1275中与谷氨酸分解代谢、精氨酸生物合成和EPS组装调节相关的细胞变化。
相似文献
引用本文的文献
本文引用的文献
Appl Microbiol Biotechnol. 2016-5
Crit Rev Food Sci Nutr. 2016-7-3