4.5 Article

Phosphorylation of AFAP-110 affects podosome lifespan in A7r5 cells

Journal

JOURNAL OF CELL SCIENCE
Volume 121, Issue 14, Pages 2394-2405

Publisher

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/jcs.026187

Keywords

AFAP1; AFAP-110; podosomes; PKC; invadopodia; actin filaments

Categories

Funding

  1. NCI NIH HHS [R01 CA060731, CA60731] Funding Source: Medline
  2. NCRR NIH HHS [P20 RR016440, RR16640] Funding Source: Medline
  3. NIDCR NIH HHS [DE014578, R01 DE014578] Funding Source: Medline

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AFAP-110 is an actin-binding and-crosslinking protein that is enriched in Src and phorbol ester (PE)-induced podosomes. In vascular smooth muscle cells endogenous AFAP-110 localized to actin stress fibers and, in response to treatment with phorbol-12,13- dibutyrate (PDBu), to actin-rich podosomes. Since PEs can activate PKC alpha, AFAP-110 is a substrate of PKCa and PKC alpha-AFAP-110 interactions direct podosome formation, we sought to identify a PE-induced phosphorylation site in AFAP-110 and determine whether phosphorylation is linked to the formation of podosomes. Mutational analysis revealed Ser277 of AFAP-110 to be phosphorylated in PE-treated cells. The use of a newly generated, phospho-specific antibody directed against phosphorylated Ser277 revealed that PKC alpha activation is associated with PE-induced AFAP-110 phosphorylation. In PDBu-treated A7r5 rat vascular smooth muscle cells, immunolabeling using the phospho-specific antibody showed that phospho-AFAP-110 is primarily associated with actin in podosomes. Although mutation of Ser at position 277 to Ala (AFAP-110(S277A)) did not alter the ability of AFAP-110 to localize to podosomes, overexpression of AFAP-110(S277A) in treated and untreated A7r5 cells resulted in an increased number of cells that display podosomes. Video microscopy demonstrated that AFAP-110(S277A) expression correlates with an increased number of long-lived podosomes. Therefore, we hypothesize that AFAP-110 phosphorylation and/or dephosphorylation is involved in the regulation of podosome stability and lifespan.

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