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通过酶学、遗传学和蛋白质组学方法对罗伊氏乳杆菌CRL 1101产甘露醇过程中甘露醇2-脱氢酶的全局分析

Global Analysis of Mannitol 2-Dehydrogenase in Lactobacillus reuteri CRL 1101 during Mannitol Production through Enzymatic, Genetic and Proteomic Approaches.

作者信息

Ortiz Maria Eugenia, Bleckwedel Juliana, Fadda Silvina, Picariello Gianluca, Hebert Elvira M, Raya Raúl R, Mozzi Fernanda

机构信息

Centro de Referencia para Lactobacilos (CERELA)-CONICET, Chacabuco 145, San Miguel de Tucumán, Tucumán, Argentina.

Istituto di Scienze dell' Alimentazione-CNR, Avellino, Avellino, Italy.

出版信息

PLoS One. 2017 Jan 6;12(1):e0169441. doi: 10.1371/journal.pone.0169441. eCollection 2017.

Abstract

Several plants, fungi, algae, and certain bacteria produce mannitol, a polyol derived from fructose. Mannitol has multiple industrial applications in the food, pharmaceutical, and medical industries, being mainly used as a non-metabolizable sweetener in foods. Many heterofermentative lactic acid bacteria synthesize mannitol when an alternative electron acceptor such as fructose is present in the medium. In previous work, we reported the ability of Lactobacillus reuteri CRL 1101 to efficiently produce mannitol from sugarcane molasses as carbon source at constant pH of 5.0; the activity of the enzyme mannitol 2-dehydrogenase (MDH) responsible for the fructose conversion into mannitol being highest during the log cell growth phase. Here, a detailed assessment of the MDH activity and relative expression of the mdh gene during the growth of L. reuteri CRL 1101 in the presence of fructose is presented. It was observed that MDH was markedly induced by the presence of fructose. A direct correlation between the maximum MDH enzyme activity and a high level of mdh transcript expression during the log-phase of cells grown in a fructose-containing chemically defined medium was detected. Furthermore, two proteomic approaches (2DE and shotgun proteomics) applied in this study confirmed the inducible expression of MDH in L. reuteri. A global study of the effect of fructose on activity, mdh gene, and protein expressions of MDH in L. reuteri is thus for the first time presented. This work represents a deep insight into the polyol formation by a Lactobacillus strain with biotechnological potential in the nutraceutics and pharmaceutical areas.

摘要

几种植物、真菌、藻类和某些细菌能产生甘露醇,它是一种由果糖衍生而来的多元醇。甘露醇在食品、制药和医疗行业有多种工业应用,主要用作食品中的非代谢性甜味剂。当培养基中存在如果糖这样的替代电子受体时,许多异型发酵乳酸菌会合成甘露醇。在之前的工作中,我们报道了罗伊氏乳杆菌CRL 1101能够在pH值恒定为5.0的条件下,以甘蔗 molasses作为碳源高效生产甘露醇;负责将果糖转化为甘露醇的甘露醇2-脱氢酶(MDH)的活性在对数细胞生长阶段最高。在此,本文详细评估了在果糖存在的情况下,罗伊氏乳杆菌CRL 1101生长过程中MDH的活性以及mdh基因的相对表达。结果发现,果糖的存在显著诱导了MDH的产生。在含果糖的化学限定培养基中生长的细胞对数期,检测到最大MDH酶活性与高水平的mdh转录本表达之间存在直接相关性。此外,本研究中应用的两种蛋白质组学方法(二维电泳和鸟枪法蛋白质组学)证实了罗伊氏乳杆菌中MDH的可诱导表达。因此,首次对果糖对罗伊氏乳杆菌中MDH的活性、mdh基因和蛋白质表达的影响进行了全面研究。这项工作代表了对一种在营养保健品和制药领域具有生物技术潜力的乳杆菌菌株形成多元醇的深入洞察。

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