4.8 Article

Interaction of 7SK with the Smn complex modulates snRNP production

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41467-021-21529-1

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  1. Deutsche Forschungsgemeinschaft [BR4910/1-1, SPP1738, BR4910/2-1, SPP1935, SE697/4-1, SE697/5-1, SE697/1, JA1823/3-1, Fi573/15-2, Fi573/201]
  2. European Research Council [ERC-2012-SyG_318987]
  3. Open Access Publication Fund of the University of Wuerzburg

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The study reveals a functional association between the Smn complex involved in spliceosome biogenesis and the 7SK complex involved in transcriptional regulation, showing that the interaction is enhanced by changes in transcriptional activity, leading to modulation of spliceosome production.
Gene expression requires tight coordination of the molecular machineries that mediate transcription and splicing. While the interplay between transcription kinetics and spliceosome fidelity has been investigated before, less is known about mechanisms regulating the assembly of the spliceosomal machinery in response to transcription changes. Here, we report an association of the Smn complex, which mediates spliceosomal snRNP biogenesis, with the 7SK complex involved in transcriptional regulation. We found that Smn interacts with the 7SK core components Larp7 and Mepce and specifically associates with 7SK subcomplexes containing hnRNP R. The association between Smn and 7SK complexes is enhanced upon transcriptional inhibition leading to reduced production of snRNPs. Taken together, our findings reveal a functional association of Smn and 7SK complexes that is governed by global changes in transcription. Thus, in addition to its canonical nuclear role in transcriptional regulation, 7SK has cytosolic functions in fine-tuning spliceosome production according to transcriptional demand. The noncoding RNA 7SK controls the transcription of mRNAs. Here, the authors show that the 7SK complex interacts with the Smn complex, suggesting crosstalk between transcription and snRNP assembly.

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