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Flavonoids are specialized metabolites that play important roles in plants, including interactions with the environment. The high structural diversity of this metabolite group is largely due to enzyme-mediated modifications of flavonoid core skeletons. In particular, glycosylation with different ...

2025-02-25 | MTBLS1965 | MetaboLights
Helicobacter pylori is a human gastric pathogen associated with gastric and duodenal ulcers as well as specific gastric cancers. It is well-evidenced that motility is essential for this pathogen to colonize human gastric tissues. We found that the H. pylori G27 HP0518 mutant showed greater motility ...
ORGANISM(S): Helicobacter pylori 
The trade-off between growth and defense is a critical aspect of plant immunity. Therefore, the plant immune response needs to be tightly regulated. Salicylic acid (SA) is an important plant hormone regulating defense against biotrophic pathogens. Recently, N-hydroxy-pipecolic acid (NHP) was identif...
2022-02-28 | MTBLS2334 | MetaboLights
O-GlcNAcylation Modulates Expression and Abundance of N-Glycosylation Machinery in an Inherited Glycosylation Disorder
The amino acid sequences of immunodominant domains of hemagglutinin (HA) on the surface of influenza A virus (IAV) evolve rapidly, producing viral variants. HA mediates receptor recognition, binding and cell entry, and serves as the target for IAV vaccines. Glycosylation, a post-translational modifi...
ORGANISM(S): Homo sapiens (Human) Canis familiaris (Dog) (Canis lupus familiaris) Gallus gallus (Chicken) 
2022-09-24 | PXD029700 | Pride
Whole-genome CRISPR screening identifies N-glycosylation as an essential pathway and a potential novel therapeutic target in CALR-mutant MPN (Pooled CRISPR Screen).
To determine whether CRISPR interference can be used to recapitulate a glycosylation null mutant strain in Burkholderia cenocepacia via data independent acquisition mass spectrometry
ORGANISM(S): Burkholderia cenocepacia K56-2Valvano 
2023-03-20 | PXD037550 | Pride
Whole-genome CRISPR screening identifies N-glycosylation as an essential pathway and a potential novel therapeutic target in CALR-mutant MPN (Whole Genome CRISPR Screen).
Calreticulin (CALR) mutations are frequent, disease-initiating events in myeloproliferative neoplasms (MPN). Although the biological mechanism by which CALR mutations cause MPN has been elucidated, there currently are no clonally selective therapies for CALR-mutant MPN. To identify unique genetic de...
ORGANISM(S): Mus musculus 
2022-09-21 | GSE203455 | GEO
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