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SRRM2 splicing factor modulates cell fate in early development [RNA-Seq 2]

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NIAID Data Ecosystem2026-05-02 收录
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE243432
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Srrm2 splicing factor is a novel gene implicated in developmental disorders and diseases. However, the role of Srrm2 in early mammalian development remains unexplored. Here, we show that Srrm2 expression dosage is critical for maintaining embryonic stem cell pluripotency and cell identity. Srrm2 heterozygosity promotes loss of stemness characterized by the coexistence of cells expressing naive and formative markers, together with large gene expression shifts, including in serum-response transcription factor targets and differentiation-related genes. Depletion of Srrm2 by RNA interference in embryonic stem cells identified splicing misregulation of specific genes, often linked to exon skipping. These results show that Srrm2 dosage is key in controlling stemness and cell fate decisions. Our findings unveil Srrm2’s molecular and cellular implications in development, shedding light on the involvement of splicing regulators in early embryogenesis, developmental diseases and tumorigenesis. To investigate the role of Srrm2 levels in pluripotency, we obtain mouse embryonic stem cells (mESC) E14tg2a.4 Srrm2 heterozygous knockout and mESC E14tg2a.4 parental wild-type cells from MMRC UCDavis. We then performed gene expression profilling analysis from total RNA-seq of 3 replicates per condition.
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2025-07-29
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