Author
Listed:
- Milan Hluchý
(Masaryk University)
- Pavla Gajdušková
(Masaryk University)
- Igor Ruiz de los Mozos
(The Francis Crick Institute
NASERTIC, Government of Navarra
University of Navarra)
- Michal Rájecký
(Masaryk University)
- Michael Kluge
(Ludwig-Maximilians-Universität München)
- Benedict-Tilman Berger
(Goethe University Frankfurt am Main
Goethe University Frankfurt am Main)
- Zuzana Slabá
(Masaryk University)
- David Potěšil
(Masaryk University)
- Elena Weiß
(Ludwig-Maximilians-Universität München)
- Jernej Ule
(The Francis Crick Institute
King’s College London)
- Zbyněk Zdráhal
(Masaryk University)
- Stefan Knapp
(Goethe University Frankfurt am Main
Goethe University Frankfurt am Main)
- Kamil Paruch
(Masaryk University
St Anne’s University Hospital in Brno)
- Caroline C. Friedel
(Ludwig-Maximilians-Universität München)
- Dalibor Blazek
(Masaryk University)
Abstract
RNA splicing, the process of intron removal from pre-mRNA, is essential for the regulation of gene expression. It is controlled by the spliceosome, a megadalton RNA–protein complex that assembles de novo on each pre-mRNA intron through an ordered assembly of intermediate complexes1,2. Spliceosome activation is a major control step that requires substantial protein and RNA rearrangements leading to a catalytically active complex1–5. Splicing factor 3B subunit 1 (SF3B1) protein—a subunit of the U2 small nuclear ribonucleoprotein6—is phosphorylated during spliceosome activation7–10, but the kinase that is responsible has not been identified. Here we show that cyclin-dependent kinase 11 (CDK11) associates with SF3B1 and phosphorylates threonine residues at its N terminus during spliceosome activation. The phosphorylation is important for the association between SF3B1 and U5 and U6 snRNAs in the activated spliceosome, termed the Bact complex, and the phosphorylation can be blocked by OTS964, a potent and selective inhibitor of CDK11. Inhibition of CDK11 prevents spliceosomal transition from the precatalytic complex B to the activated complex Bact and leads to widespread intron retention and accumulation of non-functional spliceosomes on pre-mRNAs and chromatin. We demonstrate a central role of CDK11 in spliceosome assembly and splicing regulation and characterize OTS964 as a highly selective CDK11 inhibitor that suppresses spliceosome activation and splicing.
Suggested Citation
Milan Hluchý & Pavla Gajdušková & Igor Ruiz de los Mozos & Michal Rájecký & Michael Kluge & Benedict-Tilman Berger & Zuzana Slabá & David Potěšil & Elena Weiß & Jernej Ule & Zbyněk Zdráhal & Stefan Kn, 2022.
"CDK11 regulates pre-mRNA splicing by phosphorylation of SF3B1,"
Nature, Nature, vol. 609(7928), pages 829-834, September.
Handle:
RePEc:nat:nature:v:609:y:2022:i:7928:d:10.1038_s41586-022-05204-z
DOI: 10.1038/s41586-022-05204-z
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