hmo nitrogen b infantis atcc 17930 Search Results


96
ATCC hmo nitrogen b infantis atcc 17930
Figure 4. Model of B. infantis <t>HMO</t> nitrogen utilization. Nitrogen metabolism is shaded in yellow, carbohydrate metabolism in green, and peptidoglycan synthesis pathways in purple. Solid arrows are for one-step reactions and dashed arrows for multi-step reactions. The genes involved in the pathways are designated by numbers (1–25) in dark gray circles and listed in Table S5. LNT, lacto-N-tetraose; LNnT, lacto-N-neotetraose; NAG or GlcNAc, N-acetyl glucosamine; GlcNAc-6-P, N-acetyl glucosamine-6-phosphate; GlcNAc-1-P, N-acetyl glucosamine-1-phosphate; GlcN-6-P, glucosamine-6-phosphate; GlcN-1-P, glucosamine-1-phosphate; Fru-6-P, fructose- 6-phosphate; 2-OG, 2-oxoglutarate; Glu, glutamate; Gln, glutamine; UDP-GlcNAc, uridine diphosphate-N-acetyl glucosamine; UDP- MurNAc, uridine diphosphate-N-acetyl muramic acid.
Hmo Nitrogen B Infantis Atcc 17930, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hmo+nitrogen+b+infantis+atcc+17930/Iscove's+Modified+Dulbecco's+Medium/pm37609905-118-13-17
Average 96 stars, based on 1 article reviews
hmo nitrogen b infantis atcc 17930 - by Bioz Stars, 2026-10
96/100 stars
  Buy from Supplier

Image Search Results


Figure 4. Model of B. infantis HMO nitrogen utilization. Nitrogen metabolism is shaded in yellow, carbohydrate metabolism in green, and peptidoglycan synthesis pathways in purple. Solid arrows are for one-step reactions and dashed arrows for multi-step reactions. The genes involved in the pathways are designated by numbers (1–25) in dark gray circles and listed in Table S5. LNT, lacto-N-tetraose; LNnT, lacto-N-neotetraose; NAG or GlcNAc, N-acetyl glucosamine; GlcNAc-6-P, N-acetyl glucosamine-6-phosphate; GlcNAc-1-P, N-acetyl glucosamine-1-phosphate; GlcN-6-P, glucosamine-6-phosphate; GlcN-1-P, glucosamine-1-phosphate; Fru-6-P, fructose- 6-phosphate; 2-OG, 2-oxoglutarate; Glu, glutamate; Gln, glutamine; UDP-GlcNAc, uridine diphosphate-N-acetyl glucosamine; UDP- MurNAc, uridine diphosphate-N-acetyl muramic acid.

Journal: Gut microbes

Article Title: Bifidobacterium infantis utilizes N-acetylglucosamine-containing human milk oligosaccharides as a nitrogen source.

doi: 10.1080/19490976.2023.2244721

Figure Lengend Snippet: Figure 4. Model of B. infantis HMO nitrogen utilization. Nitrogen metabolism is shaded in yellow, carbohydrate metabolism in green, and peptidoglycan synthesis pathways in purple. Solid arrows are for one-step reactions and dashed arrows for multi-step reactions. The genes involved in the pathways are designated by numbers (1–25) in dark gray circles and listed in Table S5. LNT, lacto-N-tetraose; LNnT, lacto-N-neotetraose; NAG or GlcNAc, N-acetyl glucosamine; GlcNAc-6-P, N-acetyl glucosamine-6-phosphate; GlcNAc-1-P, N-acetyl glucosamine-1-phosphate; GlcN-6-P, glucosamine-6-phosphate; GlcN-1-P, glucosamine-1-phosphate; Fru-6-P, fructose- 6-phosphate; 2-OG, 2-oxoglutarate; Glu, glutamate; Gln, glutamine; UDP-GlcNAc, uridine diphosphate-N-acetyl glucosamine; UDP- MurNAc, uridine diphosphate-N-acetyl muramic acid.

Article Snippet: The B. infantis urease gene cluster is significantly induced by NAG nitrogen and HMO nitrogen B. infantis ATCC 17930 (UMA 299) utilizes urea as a nitrogen source, due to the expression of urease gene cluster.22,23 The urease gene cluster (Blon_0104–Blon_0115) is conserved in B. infantis UMA 272 as well as other strains.5,6 The transcriptome and proteome were interrogated to ascertain whether the urease gene cluster is co-regulated by another nitrogen source from human milk.

Techniques: