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Meiotic progression in mammals is governed by tightly coordinated transcriptional programs and surveillance mechanisms that ensure the successful pairing, synapsis, and segregation of homologous chromosomes. In spermatocytes, homolog pairing is safeguarded by the pachytene checkpoint, whose mechanis...
ORGANISM(S): Mus musculus 
SRSF1 is crucial for male meiosis through alternative splicing during homologous pairing and synapsis in mice [RNA-seq]
Homologous pairing and synapsis are essential in meiotic prophase I during spermatogenesis. However, the underlying mechanisms of how alternative splicing (AS) functions in homologous pairing and synapsis remain largely unclear. We reveal that SRSF1 is essential for gene expression and AS in homolog...
ORGANISM(S): Mus musculus 
2024-01-09 | GSE227403 | GEO
Homologous pairing and synapsis are essential in meiotic prophase I during spermatogenesis. However, the underlying mechanisms of how alternative splicing (AS) functions in homologous pairing and synapsis remain largely unclear. We reveal that SRSF1 is essential for gene expression and AS in homolog...
ORGANISM(S): Mus musculus 
2024-01-08 | GSE227303 | GEO
In non-homologous end joining repair of DNA double strand breaks, DNA dependent protein kinase catalytic subunit (DNA-PKcs) and Ku70/80 binds the free DNA ends forming the holoenzyme DNA-PK. DNA-PK synapses across the break to tether the broken ends in the initial long range synaptic complex. We gen...
ORGANISM(S): Homo sapiens (Human) 
2021-01-20 | PXD017931 | Pride
Prophase I of meiosis involves dynamic chromosome segregation processes including synapsis, meiotic recombination, and cohesion. Genetic defects in genes participating in these processes consistently cause reproduction failure in mice. To identify candidate genes responsible for infertility or recur...
ORGANISM(S): Mus musculus 
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