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Reversible acylation of lysine ε-amino groups, e.g., acetylation, succinylation, maronylation, and myristoylation, is involved in basic physiological processes such as metabolism, cell signaling and aging. In this study, we developed a novel enrichment method for acylated peptides without the use of...
ORGANISM(S): Homo Sapiens (human) 
TEAD transcription factors are responsible for the transcriptional output of Hippo signalling1,2. TEAD activity is primarily regulated by phosphorylation of its coactivators YAP and TAZ3,4. In addition, cysteine palmitoylation has recently been shown to regulate TEAD activity5,6. Here, we report lys...
ORGANISM(S): Homo sapiens (Human) 
2023-03-19 | PXD033939 | Pride
Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD). Lysine acetylation is known to regulate numerous mitochondrial metabolic pathways and recent reports demonstrate that alcohol-induced protein acylation negatively impacts these processes. To identi...
ORGANISM(S): Mus musculus (Mouse) 
2019-01-23 | PXD012089 | Pride
Numerous proteins synthesized in cells ranging from bacteria to humans have to be posttranslationally acylated to become biologically active. Bacterial Repeats in ToXin (RTX) cytolysins form a prominent group of proteins that are synthesized as inactive protoxins and undergo a posttranslational acyl...
ORGANISM(S): Escherichia coli Bordetella pertussis (strain Tohama I / ATCC BAA-589 / NCTC 13251) 
2020-05-20 | PXD018859 | Pride
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