首页> 外文期刊>Environmental microbiology >Proteomic characterization of the acid tolerance response in Lactobacillus delbrueckii subsp. bulgaricus CAUH1 and functional identification of a novel acid stress-related transcriptional regulator Ldb0677
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Proteomic characterization of the acid tolerance response in Lactobacillus delbrueckii subsp. bulgaricus CAUH1 and functional identification of a novel acid stress-related transcriptional regulator Ldb0677

机译:蛋白质组学表征的德氏乳杆菌亚种中的耐酸反应。牛CAUH1和新型酸胁迫相关转录调节子Ldb0677的功能鉴定

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摘要

To overcome the deleterious effects of acid stress, Lactobacillus delbrueckii subsp. bulgaricus (L. bulgaricus) elicits an adaptive response to acid stress. In this study, proteomics approach complemented by transcriptional analysis revealed some cellular changes in L. bulgaricus CAUH1 during acid adaptation. We observed an increase of glycolysisassociated proteins, promoting an optimal utilization of carbohydrates. Also, rerouting of the pyruvate metabolism to fatty acid biosynthesis was observed, indicating a possible modification of the cell membrane rigidity and impermeability. In addition, expression of ribosomal protein S1 (RpsA) was repressed; however, the expression of EF-Tu, EF-G and TypA was up-regulated at both protein and transcript levels. This suggests a reduction of protein synthesis in response to acid stress along with possible enhancement of the translational accuracy and protein folding. It is noteworthy that the putative transcriptional regulator Ldb0677 was 1.84-fold up-regulated. Heterologous expression of Ldb0677 was shown to significantly enhance acid resistance in host strain Lactococcus lactis. To clarify its role in transcriptional regulation network, the DNA-binding specificity of Ldb0677 was determined using bacterial one-hybrid and electrophoretic mobility shift assay. The identification of a binding motif (SSTAGACR) present in the promoter regions of 22 genes indicates that it might function as a major regulator in acid stress response in L. bulgaricus.
机译:为了克服酸胁迫的有害影响,德氏乳杆菌亚种。保加利亚(L. bulgaricus)引起对酸胁迫的适应性反应。在这项研究中,蛋白质组学方法与转录分析相辅相成,揭示了保加利亚乳杆菌CAUH1在酸适应过程中的某些细胞变化。我们观察到糖酵解相关蛋白的增加,促进了碳水化合物的最佳利用。同样,观察到丙酮酸代谢重新路由至脂肪酸生物合成,表明可能改变了细胞膜的刚性和不渗透性。此外,核糖体蛋白S1(RpsA)的表达受到抑制;然而,EF-Tu,EF-G和TypA的表达在蛋白质和转录本水平上均被上调。这表明响应于酸胁迫而减少的蛋白质合成以及可能提高的翻译准确性和蛋白质折叠。值得注意的是,假定的转录调节子Ldb0677被上调了1.84倍。 Ldb0677的异源表达可显着增强宿主菌株乳酸乳球菌的耐酸性。为了阐明其在转录调控网络中的作用,使用细菌一杂交和电泳迁移率迁移测定法确定了Ldb0677的DNA结合特异性。存在于22个基因的启动子区域中的结合基序(SSTAGACR)的鉴定表明,它可能在保加利亚乳杆菌的酸胁迫反应中起主要调节剂的作用。

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