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Activation loop phosphorylation of Cdk11 is restrained by PNUTS-PP1 and regulates Cdk11 activity and function

Campbell, A. E.; Aljabri, A. A.; Hesketh, A.; Byrne, D. P.; Bennett, H.; Patel, S.; Brownridge, P.; Zacharchenko, T.; Bucca, G.; Eyers, P. A.; Betancourt, A. J.; Eyers, C. E.; Bennett, D.

2024-05-10 molecular biology
10.1101/2024.05.08.592654 bioRxiv
Show abstract

Organisation of the transcription cycle is facilitated by the reversible phosphorylation of the C-terminal domain of RNA Polymerase II (RNAPII-CTD) and its accessory factors. The PNUTS-PP1 protein phosphatase is crucial for mRNA synthesis and processing, yet the complete spectrum of its physiological targets in these processes remain elusive. Here, using quantitative phosphoproteomics, we discover that Cdk11, in addition to various spliceosomal and RNA processing factors, associates with PNUTS, and that disruption of PP1-binding results in hyperphosphorylation of Cdk11 at an evolutionarily conserved Serine residue, seven amino acid residues C-terminal to DFG residues in the activation loop. In vitro experiments reveal a role for Ser DFG+7 in modulating Cdk11 kinase activity towards RNAPII-CTD Ser5. Making use of a novel technique to conditionally disrupt PP1 binding, we show that PNUTS-PP1 normally serves to restrain Cdk11 phosphorylation in vivo. Mutational analysis shows that cdk11 is not only essential for survival but also plays a widespread role in regulating normal mRNA expression and splicing. Notably, we find that a phosphomimetic mutation in cdk11 exhibits distinct biological effects compared to loss of cdk11 function, including defective processing of intronic small nucleolar RNAs, diminished intronic RNA Pol II velocity, and a decrease in intergenic transcription. These findings underscore physiologically significant roles of Cdk11 dephosphorylation by PNUTS-PP1 in the regulation of mRNA transcription and processing.

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