Abstract

The transcription factor C/EBPβ plays a key role in monocytic differentiation and inflammation. Its small isoform LIP is associated with proliferation at early premonocytic developmental stages and regulated via mTOR-dependent signalling. During later stages of (pre)monocytic differentiation there is a considerable increase in the large C/EBPβ isoforms LAP*/LAP which inhibit proliferation thus supporting terminal differentiation. Here, we showed in different models of monocytic differentiation that this dramatic increase in the LAP*/LAP protein and LAP/LIP ratio was accompanied by an only modest/retarded mRNA increase suggesting an important role for (post)translational mechanisms. We found that LAP*/LAP formation was induced via MEK/RSK-dependent cascades, whereas mTOR/S6K1 were not involved. Remarkably, LAP*/LAP expression was dependent on phosphorylated eIF4B, an acceleratory protein of RNA helicase eIF4A. PKR inhibition reduced the expression of eIF4B and C/EBPβ in an eIF2α-independent manner. Furthermore, under our conditions a marked stabilisation of LAP*/LAP protein occurred, accompanied by reduced chymotrypsin-like proteasome/calpain activities and increased calpastatin levels. Our study elucidates new signalling pathways inducing LAP*/LAP expression and indicates new alternative PKR functions in monocytes. The switch from mTOR- to RSK-mediated signalling to orchestrate eIF4B-dependent LAP*/LAP translation, accompanied by increased protein stability but only small mRNA changes, may be a prototypical example for the regulation of protein expression during selected processes of differentiation/proliferation.

Highlights

  • The transcription factor CCAAT/enhancer binding protein β (C/EBPβ) plays an important role in the regulation of proliferation and differentiation as well as inflammatory and metabolic processes and cancer [1,2,3]

  • Following incubation with VitD3, which is an alternative stimulus for the induction of monocytic differentiation, we found a marked increase in C/EBPβ-LAPÃ/LAP proteins albeit at a later time point (Fig 1D)

  • Using different models formonocytic differentiation we demonstrated a marked increase in the larger C/EBPβ isoforms LAPÃ/LAP and a dramatic increase in the LAP/liver-enriched inhibitory protein (LIP) ratio consistent with earlier results [17]

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Summary

Introduction

The transcription factor CCAAT/enhancer binding protein β (C/EBPβ) plays an important role in the regulation of proliferation and differentiation as well as inflammatory and metabolic processes and cancer [1,2,3]. The expression of the intronless C/EBPβ gene is regulated on several levels, i.e. de novo mRNA synthesis, alternative translation, posttranslational modification, PLOS ONE | DOI:10.1371/journal.pone.0144338 December 8, 2015

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