1. Academic Validation
  2. CDK11 inhibition induces cytoplasmic p21WAF1 splice variant by p53 stabilisation and SF3B1 inactivation

CDK11 inhibition induces cytoplasmic p21WAF1 splice variant by p53 stabilisation and SF3B1 inactivation

  • Mol Oncol. 2025 Oct 17. doi: 10.1002/1878-0261.70143.
Radovan Krejcir 1 Lukasz Arcimowicz 1 Lucia Martinkova 1 Vaclav Hrabal 1 Filip Zavadil Kokas 1 Tomas Henek 1 Martina Kucerikova 1 2 Ondrej Bonczek 1 Pavlina Zatloukalova 1 Lenka Hernychova 1 Philip J Coates 1 Borivoj Vojtesek 1 3 David P Lane 4
Affiliations

Affiliations

  • 1 RECAMO, Masaryk Memorial Cancer Institute, Brno, Czech Republic.
  • 2 National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic.
  • 3 Laboratory of Growth Regulators, Institute of Experimental Botany, The Czech Academy of Sciences, Olomouc, Czech Republic.
  • 4 Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, Solna, Sweden.
Abstract

CDK11 is a cyclin-dependent kinase with a role in transcription and RNA splicing and represents a potential target for Cancer treatment. We show that blocking CDK11 activity with the OTS964 inhibitor causes p53 stabilisation through MDM2 downregulation. Under these conditions, p53 activates the expression of its downstream effector CDKN1A (p21WAF1), produced in two isoforms, the canonical p21C and the recently described p21L. We compared the ability of both isoforms to block proliferation and showed that p21L partially lost its inhibitory potential, likely due to the missing cyclin-binding Cy2 and PCNA-interacting motifs and its cytoplasmic localisation. We identified the epitopes of four p21WAF1 antibodies using phage display to determine isoform specificity. Moreover, we show that the trigger for p21L induction is inhibition of the spliceosomal protein SF3B1. CDK11 activates SF3B1 by phosphorylation, and inhibition of either SF3B1 or CDK11 induces p21L. We discovered an isoform similar to human p21L in murine cells, suggesting evolutionary conservation of CDKN1A alternative splicing. Our results uncover an unknown link between RNA splicing and proliferation control involving a novel isoform of a key cell cycle inhibitor.

Keywords

MDM2; SF3B1; cyclin‐dependent kinase 11; p21L; p21WAF1; p53.

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