Erk5 inhibits endothelialmigration via KLF2-dependent down-regulation of PAK1

Ravi K. Komaravolu, Christian Adam, Jan Renier A.J. Moonen, Martin C. Harmsen, Matthias Goebeler, Marc Schmidt

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

Aims The MEK5/Erk5 pathway mediates beneficial effects of laminar flow, a major physiological factor preventing vascular dysfunction. Forced Erk5 activation induces a protective phenotype in endothelial cell (EC) that is associated with a dramatically decreased migration capacity of those cells. Transcriptional profiling identified the Krüppel-like transcription factors KLF2 and KLF4 as central mediators of Erk5-dependent gene expression. However, their downstream role regarding migration is unclear and relevant secondary effectors remain elusive. Here, we further investigated the mechanism underlying Erk5-dependent migration arrest in ECs. Methods and results Our experiments reveal KLF2-dependent loss of the pro-migratory Rac/Cdc42 mediator, p21-activated kinase 1 (PAK1), as an important mechanism of Erk5-induced migration inhibition.We show that endothelial Erk5 activation by expression of a constitutively active MEK5 mutant, by statin treatment, or by application of laminar shear stress strongly decreased PAK1 mRNA and protein expression. Knockdown of KLF2 but not of KLF4 prevented Erk5-mediated PAK1 mRNA inhibition, revealing KLF2 as a novel PAK1 repressor in ECs. Importantly, both PAK1 re-expression and KLF2 knockdown restored the migration capacity of Erk5-activated ECs underscoring their functional relevance downstream of Erk5. Conclusion Our data provide first evidence for existence of a previously unknown Erk5/KLF2/PAK1 axis, which may limit undesired cell migration in unperturbed endothelium and lower its sensitivity for migratory cues that promote vascular diseases including atherosclerosis.

Original languageEnglish (US)
Pages (from-to)86-95
Number of pages10
JournalCardiovascular Research
Volume105
Issue number1
DOIs
StatePublished - Jan 1 2015
Externally publishedYes

Keywords

  • Endothelial migration
  • Erk5
  • Krüppel-like factor
  • Laminar shear stress
  • PAK1

ASJC Scopus subject areas

  • Physiology
  • Cardiology and Cardiovascular Medicine
  • Physiology (medical)

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