G49108TO
| Organisms | Evidence |
|---|---|
| Mus musculus (house mouse) | |
| Rattus norvegicus (Norway rat) | |
| Homo sapiens (human) | |
| Drosophila melanogaster (fruit fly) | |
| Streptococcus pneumoniae |
| Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
|---|---|---|---|---|---|---|
| B4GALT5 | (not applicable) |
|
[beta]-S-pNP |
|
[beta]-S-pNP | |
| B3GALT2 | UDP-Gal |
|
Lemieux |
|
Lemieux | |
| B4GALT2 | UDP-Gal |
|
Benzyl-[beta] |
|
Benzyl-[beta] | |
| B4GALT1 | UDP-Gal |
|
R |
|
R | |
| B3GALT5 | UDP-Gal |
|
R |
|
R |
| Gene Symbol | Donor | Acceptor | Reducing terminal(Acceptor) | Product | Reducing terminal(Product) | Reference |
|---|---|---|---|---|---|---|
| B4GALT5 | (not applicable) |
|
[beta]-S-pNP |
|
[beta]-S-pNP | |
| B4GALT3 | UDP-Gal |
|
Benzyl-[beta] |
|
Benzyl-[beta] | |
| B4GALT4 | UDP-Gal |
|
[beta]-1-Benzl |
|
[beta]-1-Benzl | |
| B3GALT2 | UDP-Gal |
|
Lemieux |
|
Lemieux | |
| B4GALT4 | UDP-Gal |
|
[beta]-1-4-methyl-umbelliferyl |
|
[beta]-1-4-methyl-umbelliferyl |
| UniProt ID | Protein Name | Reference | Source |
|---|---|---|---|
| Q9NQS3 | Nectin-3 | ||
| Q9NQS5 | G-protein coupled receptor 84 | ||
| Q9NQS7 | Inner centromere protein | ||
| Q9NQT8 | Kinesin-like protein KIF13B | ||
| Q9NQV6 | PR domain zinc finger protein 10 | ||
| Q9NQW6 | Anillin | ||
| Q9NQW7 | Xaa-Pro aminopeptidase 1 | ||
| Q9NQX3 | Gephyrin | ||
| Q9NQZ7 | Ectonucleoside triphosphate diphosphohydrolase 7 | ||
| Q9NR09 | Dual E2 ubiquitin-conjugating enzyme/E3 ubiquitin-protein ligase BIRC6 |
| Pathway Name | Organism |
|---|---|
| Antimicrobial peptides | Xenopus tropicalis |
| Antimicrobial peptides | Rattus norvegicus |
| Antimicrobial peptides | Danio rerio |
| Antimicrobial peptides | Bos taurus |
| Antimicrobial peptides | Canis familiaris |
| Antimicrobial peptides | Sus scrofa |
| Antimicrobial peptides | Dictyostelium discoideum |
| Antimicrobial peptides | Mus musculus |
| Antimicrobial peptides | Drosophila melanogaster |
| Antimicrobial peptides | Homo sapiens |
RES 1b:b-dglc-HEX-1:5 2s:n-acetyl LIN 1:1d(2+1)2n
| PubMed ID | Title | First Author | Publication Date | Source |
|---|---|---|---|---|
| 39531497 | Ultradeep O-GlcNAc proteomics reveals widespread O-GlcNAcylation on tyrosine residues of proteins | Hou C | 2024 Nov 12 |
|
| 39532904 | Structures of complete extracellular assemblies of type I and type II Oncostatin M receptor complexes | Zhou Y | 2024 Nov 12 |
|
| 39509538 | Opportunities for Therapeutic Modulation of O-GlcNAc | Cheng SS | 2024 Nov 07 |
|
| 39511418 | Mechanistic study of SCOOPs recognition by MIK2–BAK1 complex reveals the role of N-glycans in plant ligand–receptor–coreceptor complex formation | Wu H | 2024 Nov 07 |
|
| 39503754 | TMEM106B amyloid filaments in the Biondi bodies of ependymal cells | Ghetti B | 2024 Nov 06 |
|
| 39594580 | Modifying the Glycocalyx of Melanoma Cells via Metabolic Glycoengineering Using N-Acetyl-d-glucosamine Analogues | Harris D | 2024 Nov 06 |
|
| 38631666 | Crystal Structure of Bimekizumab Fab Fragment in Complex with IL-17F Provides Molecular Basis for Dual IL-17A and IL-17F Inhibition | Adams R | 2024 Nov |
|
| 39414231 | From Fringe to the Mainstream: How ETD MS Brought O-GlcNAc to the Masses | Udeshi ND | 2024 Nov |
|
| 39304040 | Structural and biochemical insights into the molecular mechanism of N-acetylglucosamine/N-Acetylmuramic acid kinase MurK from Clostridium acetobutylicum | He X | 2024 Nov |
|
| 39395807 | O-GlcNAcylation of ribosome-associated proteins is concomitant with translational reprogramming during proteotoxic stress | Zeidan Q | 2024 Nov |
|
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Supported by JST NBDC Grant Number JPMJND2204
Partly supported by NIH Common Fund Grant #1U01GM125267-01
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Last updated: August 4, 2025