233 weissella (DSMZ)
Structured Review
233 Weissella, supplied by DSMZ, used in various techniques. Bioz Stars score: 94/100, based on 14 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dsm+20196/Weissella+confusa/us12553023-233-0-4
Average 94 stars, based on 14 article reviews
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other:Article Title: Slowly hydrolyzable property of microbial dextrans at the small intestinal α-glucosidase levels leads to the modulated glycemic responses in the mouse model. Article Snippet: Dextran-type α-glucans have been known as non-digestible ingredients that can be considered prebiotics to promote colon health.. However, recent studies have revealed that various α-linked glucosyl units are hydrolyzed to glucose by small intestinal α-glucosidases.. This study analyzed the structural characteristics of exopolysaccharides (EPSs) from Weissella species, and the hydrolysis properties at both in vitro/in vivo levels were investigated. Article Title: Biocatalytic racemization of synthetically important functionalized α-hydroxyketones using microbial cells Article Snippet: Biocatalytic racemization of straight-chain and cyclic acyloins bearing (halo)alkyl, alkenyl and functionalized (hetero)aryl moieties was accomplished using whole resting cells of bacteria, fungi and yeasts.. Mild physiological reaction conditions ensured the suppression of undesired side-reactions, such as elimination or condensation.. This biocatalytic protocol represents a useful tool for the clean racemization of unwanted enantiomers of synthetically important a-hydroxyketones derived from kinetic resolution. Article Title: Biocatalytic racemisation of alpha-hydroxyketones Article Snippet: Experimental Section Whole microbial cells, in particular Lactobacillus paracasei subsp. paracasei DSM 20008, DSM 20207, DSM 2649, Lactobacillus sakei subsp. sakei DSM 20017, Lactobacillus halotolerans DSM 20190, Lactobacillus delbrueckii subsp. delbrueckii DSM 20074, Lactobacillus confusus DSM 20196 and Lactobacillus oris DSM 4864, were shown to racemise alpha-hydroxycarbonyl compounds 1-4 of the general structure shown below, where R1 and R2 are as follows: Substrate R1 R2 (1) —CH3 —CH3 (2) —C6H5 —C6H5 (3) —CH3 —C6H5 (4) —C6H5 —CH3 Preparation of Biocatalyst: Lactobacillus paracasei subsp. paracasei DSM 20008, DSM 20207, DSM 2649, Lactobacillus sakei subsp. sakei DSM 20017, Lactobacillus halotolerans DSM 20190, Lactobacillus delbrueckii subsp. delbrueckii DSM 20074, Lactobacillus confusus DSM 20196 and Lactobacillus oris DSM 4864 were grown on |
![Genomic map of <t>Weissella</t> confusa (A) where purple colored are genomic CDS and cyan colored are rRNAs and yellow colored are tRNAs. (B) red colored are AMR genes and blue colored are CRISPR array and green colored are HGT region. (C) Secondary metabolite biosynthesis cluster in W. confusa . The T3PKS (Type III Polyketide Synthase) cluster spans 41,167 nucleotides and encodes 29 genes (Genes are depicted in arrow boxes). Genomic map of Pediococcus pentosaceus (D) where purple colored are genomic CDS and cyan colored are rRNAs and yellow colored are tRNAs. (E) red colored are AMR genes and blue colored are CRISPR array and green colored are HGT region. (F) Three secondary metabolite biosynthesis clusters in P. pentosaceus . (Gens are depicted in arrow boxes) A T3PKS (Type III Polyketide Synthase) cluster spanning 41,167 nucleotides and encoding 42 genes A lanthipeptide-class-III cluster spanning 16,196 nucleotides and encoding 12 genes [C] A RiPP-like (Ribosomally synthesized and Post-translationally modified Peptide) cluster spanning 15,092 nucleotides and encoding 13 genes.](https://bio-rxiv-images-cdn.bioz.com/dois_ending_with_67/10__1101_slash_2025__06__04__657967/10__1101_slash_2025__06__04__657967___F1.large.jpg)