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Loss of LUC7L2 and U1 snRNP subunits shifts energy metabolism from glycolysis to OXPHOS
Oxidative phosphorylation (OXPHOS) and glycolysis are the two major pathways for ATP production. The reliance on each varies across tissues and cell states, and can influence susceptibility to disease. At present, the full set ofmolecular mechanisms governing the relative expression and balance of t...
ORGANISM(S): Homo sapiens 
2021-04-13 | GSE157917 | GEO
Mutation or deletion of the U1 snRNP-associated factor LUC7L2 is associated with myeloid neoplasms, and knockout of LUC7L2 alters cellular metabolism. Here, we uncover that members of the LUC7 protein family differentially regulate two major classes of 5' splice sites (5'SS) and broadly regulate mRN...
ORGANISM(S): Homo sapiens Arabidopsis thaliana 
2024-12-30 | GSE285019 | GEO
Study of the proteome of K562 LUC7L2WT and LUC7L2KO cells grown for 14 days in DMEM media containing either 25mM glucose or 25mM galactose.
ORGANISM(S): Homo sapiens (Human) 
2021-04-12 | PXD021917 | Pride
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