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Pyruvate has two major fates upon entry into mitochondria, the oxidative decarboxylation to acetyl-CoA or the biotin-dependent carboxylation to oxaloacetate via pyruvate carboxylase (Pcx). Here we have generated mice with a liver specific knockout of pyruvate carboxylase (PcxL-/-) to understand the...
ORGANISM(S): Mus musculus (Mouse) 
2022-10-31 | PXD032028 | Pride
In this study, we employed an integrated proteomics and acetyl-proteomics strategy to characterize of 8 tumors and 8 matched normal adjacent tissues (NATs) with 4D proteomics technology. Proteomics analysis identified a total of 6551 proteins, of which 5411 proteins were quantified across all sample...
ORGANISM(S): Homo sapiens (Human) 
2022-07-02 | PXD026729 | Pride
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-09 | GSE240870 | GEO
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-09 | GSE240868 | GEO
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-09 | GSE240353 | GEO
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-09 | GSE296631 | GEO
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-09 | GSE240352 | GEO
Metabolites are essential substrates for epigenetic modifications. Although nuclear acetyl-CoA constitutes a small fraction of the whole cell pool, it regulates cell fate by locally providing histone acetylation substrate. Here, we report a nucleus-specific acetyl-CoA regulatory mechanism that can b...
ORGANISM(S): Homo sapiens 
2025-05-08 | GSE240355 | GEO
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