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Genome organization around nuclear speckles drives mRNA splicing efficiency

GSE247833 Homo sapiens; Mus musculus Expression profiling by high throughput sequencing; Other 26 samples Submitted 2024/03/22 Platform GPL20301Platform GPL21103Platform GPL30172Platform GPL16791
Summary
The nucleus is highly organized such that factors involved in transcription and processing of distinct classes of RNA are organized within specific nuclear bodies. One example is the nuclear speckle, which is defined by high concentrations of protein and non-coding RNA regulators of pre-mRNA splicing. What functional role, if any, speckles might play in the process of mRNA splicing remains unknown. Here we show that genes localized near nuclear speckles display higher spliceosome concentrations, increased spliceosome binding to their pre-mRNAs, and higher co-transcriptional splicing levels relative to genes that are located farther from nuclear speckles. We show that directed recruitment of a pre-mRNA to nuclear speckles is sufficient to increase mRNA splicing levels. Finally, we show that gene organization around nuclear speckles is highly dynamic with differential localization between cell types corresponding to differences in splicing efficiency. Together, our results integrate the longstanding observations of nuclear speckles with the biochemistry of mRNA splicing and demonstrate a critical role for dynamic 3D spatial organization of genomic DNA in driving spliceosome concentrations and controlling the efficiency of mRNA splicing.
Published in
Genome organization around nuclear speckles drives mRNA splicing efficiency
Bhat P, Chow A, Emert B et al. · Nature 2024 · PMID 38720076 · doi:10.1038/s41586-024-07429-6
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Also filed as BioProject PRJNA1040796 and SRA study SRP472090. Searching any of these in the dataset finder brings you back here.

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