Skip to main content

MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach.

Publication ,  Journal Article
Stehn, JR; Floyd, SR; Wilker, EW; Reinhardt, HC; Clarke, SM; Huang, Q; Polakiewicz, RD; Sonenberg, N; Kong, YW; Yaffe, MB
Published in: Front Mol Biosci
2023

14-3-3 proteins play critical roles in controlling multiple aspects of the cellular response to stress and DNA damage including regulation of metabolism, cell cycle progression, cell migration, and apoptotic cell death by binding to protein substrates of basophilic protein kinases following their phosphorylation on specific serine/threonine residues. Although over 200 mammalian proteins that bind to 14-3-3 have been identified, largely through proteomic studies, in many cases the relevant protein kinase responsible for conferring 14-3-3-binding to these proteins is not known. To facilitate the identification of kinase-specific 14-3-3 clients, we developed a biochemical approach using high-density protein filter arrays and identified the translational regulatory molecule PABPC1 as a substrate for Chk1 and MAPKAP Kinase-2 (MK2) in vitro, and for MK2 in vivo, whose phosphorylation results in 14-3-3-binding. We identify Ser-470 on PABPC1 within the linker region connecting the RRM domains to the PABC domain as the critical 14-3-3-binding site, and demonstrate that loss of PABPC1 binding to 14-3-3 results in increased cell proliferation and decreased cell death in response to UV-induced DNA damage.

Duke Scholars

Published In

Front Mol Biosci

DOI

ISSN

2296-889X

Publication Date

2023

Volume

10

Start / End Page

1148933

Location

Switzerland

Related Subject Headings

  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Stehn, J. R., Floyd, S. R., Wilker, E. W., Reinhardt, H. C., Clarke, S. M., Huang, Q., … Yaffe, M. B. (2023). MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach. Front Mol Biosci, 10, 1148933. https://doi.org/10.3389/fmolb.2023.1148933
Stehn, Justine R., Scott R. Floyd, Erik W. Wilker, H Christian Reinhardt, Scott M. Clarke, Qiuying Huang, Roberto D. Polakiewicz, Nahum Sonenberg, Yi Wen Kong, and Michael B. Yaffe. “MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach.Front Mol Biosci 10 (2023): 1148933. https://doi.org/10.3389/fmolb.2023.1148933.
Stehn JR, Floyd SR, Wilker EW, Reinhardt HC, Clarke SM, Huang Q, et al. MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach. Front Mol Biosci. 2023;10:1148933.
Stehn, Justine R., et al. “MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach.Front Mol Biosci, vol. 10, 2023, p. 1148933. Pubmed, doi:10.3389/fmolb.2023.1148933.
Stehn JR, Floyd SR, Wilker EW, Reinhardt HC, Clarke SM, Huang Q, Polakiewicz RD, Sonenberg N, Kong YW, Yaffe MB. MAPKAP Kinase-2 phosphorylation of PABPC1 controls its interaction with 14-3-3 proteins after DNA damage: A combined kinase and protein array approach. Front Mol Biosci. 2023;10:1148933.

Published In

Front Mol Biosci

DOI

ISSN

2296-889X

Publication Date

2023

Volume

10

Start / End Page

1148933

Location

Switzerland

Related Subject Headings

  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology