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H2O2 Production in Species of the Lactobacillus acidophilus Group: a Central Role for a Novel NADH-Dependent Flavin Reductase

机译:嗜酸乳杆菌组物种中的H 2 O 2生产:新型NADH依赖的黄素还原酶的核心作用。

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摘要

Hydrogen peroxide production is a well-known trait of many bacterial species associated with the human body. In the presence of oxygen, the probiotic lactic acid bacterium Lactobacillus johnsonii NCC 533 excretes up to 1 mM H2O2, inducing growth stagnation and cell death. Disruption of genes commonly assumed to be involved in H2O2 production (e.g., pyruvate oxidase, NADH oxidase, and lactate oxidase) did not affect this. Here we describe the purification of a novel NADH-dependent flavin reductase encoded by two highly similar genes (LJ_0548 and LJ_0549) that are conserved in lactobacilli belonging to the Lactobacillus acidophilus group. The genes are predicted to encode two 20-kDa proteins containing flavin mononucleotide (FMN) reductase conserved domains. Reductase activity requires FMN, flavin adenine dinucleotide (FAD), or riboflavin and is specific for NADH and not NADPH. The Km for FMN is 30 ± 8 μM, in accordance with its proposed in vivo role in H2O2 production. Deletion of the encoding genes in L. johnsonii led to a 40-fold reduction of hydrogen peroxide formation. H2O2 production in this mutant could only be restored by in trans complementation of both genes. Our work identifies a novel, conserved NADH-dependent flavin reductase that is prominently involved in H2O2 production in L. johnsonii.
机译:过氧化氢的产生是与人体相关的许多细菌种类的众所周知的特征。在有氧的情况下,益生菌乳酸菌约翰逊乳杆菌NCC 533会排泄高达1 mM的H2O2,从而导致生长停滞和细胞死亡。通常认为与H2O2产生有关的基因(例如,丙酮酸氧化酶,NADH氧化酶和乳酸氧化酶)的破坏不会影响这一点。在这里,我们描述了由两个高度相似的基因(LJ_0548和LJ_0549)编码的新型NADH依赖性黄素还原酶的纯化,该基因在嗜酸乳杆菌属的乳酸杆菌中保守。该基因预计将编码两个包含黄素单核苷酸(FMN)还原酶保守域的20 kDa蛋白。还原酶活性需要FMN,黄素腺嘌呤二核苷酸(FAD)或核黄素,对NADH而非NADPH具有特异性。根据其在H2O2生产中的体内作用,FMN的Km为30±8μM。约翰逊乳杆菌中编码基因的删除导致过氧化氢形成减少40倍。该突变体中过氧化氢的产生只能通过两个基因的反式互补来恢复。我们的工作确定了一种新颖的,保守的,NADH依赖的黄素还原酶,该酶主要与约翰逊氏菌中的H2O2产生有关。

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