BacMet Database
Comparative exoproteome analyses of Lactobacillus spp
It is essential for the degradation of carbohydrates via glycolysis. UniProtKB. x; UniProtKB. Protein knowledgebase. UniParc.
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The strain is a non-spore-forming, facultative anaerobic Gram-positive rod. Optimal growth was observed at 30-37℃ on de Man, Rogosa and Sharpe (MRS) medium (Difco Laboratories, USA) (Valeriano et al., 2014). Bacterial cells were grown at 37℃ into the early stationary phase, and harvested by centrifugation, and only one out of seven biological replicates was used as Aims: In this report, we characterized the probiotic potential of Lactobacillus mucosae LM1, focusing on its in vitro mucin-adhesion abilities. Methods and results: Screening assays were used to evaluate LM1. Previous studies on Lact. mucosae species have been performed, but few have examined the ability of this species to adhere to and colonize the intestinal mucosa. This proteome is part of the Lactobacillus mucosae LM1 pan proteome Busco i
The Benchmarking Universal Single-Copy Ortholog (BUSCO) assessment tool is used, for eukaryotic and bacterial proteomes, to provide quantitative measures of UniProt proteome data completeness in terms of expected gene content. Reconstructing the Lactobacillus Mucosae LM1 Metabolic Pathway By Emily Humphreys 04.18.2016 Lactobacillus mucosae is naturally found in the gastrointestinal tract of humans and other animals.
Optimal growth was observed at 30-37℃ on de Man, Rogosa and Sharpe (MRS) medium (Difco Laboratories, USA) (Valeriano et al., 2014). In Vitro Evaluation of the Mucin-Adhesion Ability and Probiotic Potential of Lactobacillus Mucosae LM1 - PubMed. Our data on adhesion of LM1 strain showed a significant correlation between adhesion, hydrophobicity of cell surface and autoaggregation.
BacMet Database
As mentioned above, L. mucosae CRL573 is an efficient man-nitol producer, a polyol with multiple industrial applications Lactobacillus mucosae LM1, isolated from stool samples of a healthy piglet, displays good in vitro mucin adhesion and antimicrobial activity against pathogenic bacteria. To elucidate its antimicrobial effects and to find its epithelial cell and mucin adhesion genes, the genomic sequence of L. mucosae LM1 was investigated. Supplementation of probiotics is a promising gut microbiota-targeted therapeutic method for hyperlipidemia and atherosclerosis.
Genomes Pages - Plasmid - EMBL-EBI
In vitro evaluation of the mucin‐adhesion ability and probiotic potential of Lactobacillus mucosae LM1. VD Valeriano, MM Parungao‐Balolong, DK Kang. 26, 2016. Comparative genomic analysis of Lactobacillus mucosae LM1 identifies potential niche-specific genes and pathways for gastrointestinal adaptation. Lactobacillus mucosae is currently of interest as putative probiotics due to their metabolic capabilities and ability to colonize host mucosal niches.
-. Taxon identifier i. 1130798.
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› Lactobacillus mucosae. To clone and express a neopullulanase gene from Lactobacillus mucosae LM1 in Escherichia coli and characterise the resulting recombinant neopullulanase. An ORF in L. mucosae corresponding to a neopullulanase was cloned and expressed in E. coli. The predicted amino acid sequence of the neopullulanase contained catalytic sites and conserved motifs that are present in members of the The Lactobacillus mucosae LM1 has a high survivability coefficient on the mucosal surface so that intestinal regulation can be effectively performed in the intestines. The present invention relates to Lactobacillus mucosae LM1 having excellent acid resistance, bile resistance, harmful bacteria controlling functions, and mucosal surface adsorbing functions and to a composition including the same.
1130798.
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Genomes Pages - Plasmid - EMBL-EBI
mucosae species have been performed, but few have examined the ability of this species to adhere to and colonize the intestinal mucosa. Comparative genomic analysis of Lactobacillus mucosae LM1 identifies report the first complete genome sequence of an L. mucosae strain, L. mucosae LM1. In this study, we characterised a novel lysophospholipase (LysoPL) from the L. mucosae LM1 strain.
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BacMet Database
Lactobacillus mucosae LM1, isolated from stool samples of a healthy piglet, displays good in vitro mucin adhesion and antimicrobial activity against pathogenic bacteria. To elucidate its antimicrobial effects and to find its epithelial cell and mucin adhesion genes, the genomic sequence of L. mucosae LM1 was investigated. Lactobacillus mucosae is currently of interest as putative probiotics due to their metabolic capabilities and ability to colonize host mucosal niches.