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Haploid cells are amenable for genetic analysis because they contain only one set of chromosomes.Here,we report the derivation of haESCs from androgenetic blastocysts. These cells, which we designated AG-haESCs, express classical ESC markers, are pluripotent, and contribute to various tissues includ...
ORGANISM(S): Mus musculus 
Tumor cells must rewire nucleotide synthesis to satisfy the demands of unbridled proliferation. Meanwhile, they exhibit augmented reactive oxygen species (ROS) production which paradoxically damages DNA and free dNTPs. How these metabolic processes are integrated to fuel tumorigenesis remains to be ...
ORGANISM(S): Homo sapiens (Human) 
2023-12-27 | PXD043444 | Pride
DNA demethylation occurs in multiple cellular processes but its regulation is poorly understood. Here we report that a vital nutrient factor ascorbic acid (AA), or vitamin C (Vc), induces DNA demethylation in mammalian cells. The levels of active 5mC oxidation products, 5-formylcytosine and 5-carbox...
ORGANISM(S): Mus musculus 
The t(10;11) p (13;q14) translocation, giving rise to CALM-AF10, is a recurring chromosomal translocation observed in several types of acute leukemias as well as in lymphoma. We have previously demonstrated that the expression of the human CALM/AF10 fusion gene in murine bone marrow stem and progeni...
ORGANISM(S): Mus musculus 
The t(10;11) p (13;q14) translocation, giving rise to CALM-AF10, is a recurring chromosomal translocation observed in several types of acute leukemias as well as in lymphoma. We have previously demonstrated that the expression of the human CALM/AF10 fusion gene in murine bone marrow stem and progeni...
ORGANISM(S): Mus musculus 
proteomic analysis of genes associated with mannitol metabolism in Saccharina explains the key role in mannitol metabolism and evolutionary significance of these genes
ORGANISM(S): Saccharina Japonica 
2018-04-28 | PXD009642 |
To clarify our hypothesis and investigate the functional role of Oo-Mv in folliculogenesis, we isolated the ZP containing Oo-Mv from oocytes and performed mass spectrometry (MS) analysis to identify potential regulators of the formation of Oo-Mv.
ORGANISM(S): Mus Musculus 
2021-03-23 | PXD024931 |
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