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Embryonic lumenogenesis is controlled by selective mRNA decay triggered by LIN28A relocation [miCLIP]
Embryonic lumenogenesis is controlled by selective mRNA decay triggered by LIN28A relocation [iCLIP]
Embryonic lumenogenesis is controlled by selective mRNA decay triggered by LIN28A relocation [RNA-Seq]
Lumen formation and inflation are crucial for tubular organ morphogenesis, yet the underling mechanism remains largely unrevealed. Here, we applied 4D proteomics to screen the lumenogenesis-related proteins and reveal the potentially biological pathways that are involved in lumen inflation during no...
ORGANISM(S): Ciona savignyi 
2023-05-10 | PXD037089 | Pride
Embryonic lumenogenesis is controlled by selective mRNA decay triggered by LIN28A relocation [Slam-Seq]
Embryonic lumenogenesis is controlled by selective mRNA decay triggered by LIN28A relocation [Quant-Seq]
The naïve pluripotent epiblast cells become polarized into a rosette-like structure, followed by irreversible transition into primed pluripotency during one of the fastest morphological switches termed lumenogenesis. This requires rapid decay of pluripotency-associated mRNAs, but the underlying mech...
ORGANISM(S): Mus musculus 
2024-03-01 | GSE169549 | GEO
The naïve pluripotent epiblast cells become polarized into a rosette-like structure, followed by irreversible transition into primed pluripotency during one of the fastest morphological switches termed lumenogenesis. This requires rapid decay of pluripotency-associated mRNAs, but the underlying mech...
ORGANISM(S): Mus musculus 
2024-03-01 | GSE169547 | GEO
The naïve pluripotent epiblast cells become polarized into a rosette-like structure, followed by irreversible transition into primed pluripotency during one of the fastest morphological switches termed lumenogenesis. This requires rapid decay of pluripotency-associated mRNAs, but the underlying mech...
ORGANISM(S): Mus musculus 
2024-03-01 | GSE169554 | GEO
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