G81533KY
| Organisms | Evidence |
|---|---|
| Homo sapiens (human) |
| Pathway Name | Organism |
|---|---|
| N-Glycan antennae elongation | Canis familiaris |
| N-Glycan antennae elongation | Bos taurus |
| N-Glycan antennae elongation | Gallus gallus |
| N-Glycan antennae elongation | Danio rerio |
| N-Glycan antennae elongation | Xenopus tropicalis |
| N-Glycan antennae elongation | Rattus norvegicus |
| N-Glycan antennae elongation | Mus musculus |
| N-Glycan antennae elongation | Sus scrofa |
| N-Glycan antennae elongation | Drosophila melanogaster |
| N-Glycan antennae elongation | Homo sapiens |
RES 1b:x-dgro-dgal-NON-2:6|1:a|2:keto|3:d 2s:n-acetyl LIN 1:1d(5+1)2n
| PubMed ID | Title | First Author | Publication Date | Source |
|---|---|---|---|---|
| 38518180 | Linker-free Functionalization of Phosphorene Nanosheets by Sialic Acid Biomolecules | Khazamipour N | 2024 Mar 22 |
|
| 38503445 | Sialic acid in the regulation of blood cell production, differentiation and turnover | Irons EE | 2024 Mar 19 |
|
| 38376198 | Influenza D virus utilizes both 9- O -acetylated N -acetylneuraminic and 9- O -acetylated N -glycolylneuraminic acids as functional entry receptors | Uprety T | 2024 Mar 19 |
|
| 38353537 | Strain-specific requirements of susceptibility to rhesus enteric calicivirus infection | Farkas T | 2024 Mar 19 |
|
| 38497732 | In Situ Visualization of RNA-Specific Sialylation on Living Cell Membranes to Explore N-Glycosylation Sites | Liu H | 2024 Mar 18 |
|
| 38542909 | Characterization of an Aptamer Targeting Neu5Gc, as an Endogenous Pathogenic Factor Derived from Red Meat | Guo Y | 2024 Mar 13 |
|
| 38448555 | Engagement of sialylated glycans with Siglec receptors on suppressive myeloid cells inhibits anticancer immunity via CCL2 | Wieboldt R | 2024 Mar 06 |
|
| 38495652 | The role of sialidases in the pathogenesis of bacterial vaginosis and their use as a promising pharmacological target in bacterial vaginosis | Chen L | 2024 Mar 01 |
|
| 38561054 | Sialic Acid Mediated Endothelial and Hepatic Uptake: A Mechanism based Mathematic Model Elucidating the Complex Pharmacokinetics and Pharmacodynamics of Efmarodocokin Alfa, a Variably Glycosylated Fusion Protein | Tao X | 2024 Mar |
|
| 38873789 | Protein sialylation affects the pH-dependent binding of ferric ion to human serum transferrin | Friganović T | 2024 Jun 25 |
|
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Partly supported by NIH Common Fund Grant #1U01GM125267-01
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Last updated: April 6, 2026