Literature DB >> 17327233

The elastin receptor complex transduces signals through the catalytic activity of its Neu-1 subunit.

Laurent Duca1, Charlotte Blanchevoye, Benoît Cantarelli, Christelle Ghoneim, Stéphane Dedieu, Frédéric Delacoux, William Hornebeck, Aleksander Hinek, Laurent Martiny, Laurent Debelle.   

Abstract

The binding of elastin peptides on the elastin receptor complex leads to the formation of intracellular signals but how this is achieved remains totally unknown. Using pharmacological inhibitors of the enzymatic activities of its subunits, we show here that the elastin peptide-driven ERK1/2 activation and subsequent pro-MMP-1 production, observed in skin fibroblasts when they are cultured in the presence of these peptides, rely on a membrane-bound sialidase activity. As lactose blocked this effect, the elastin receptor sialidase subunit, Neu-1, seemed to be involved. The use of a catalytically inactive form of Neu-1 and the small interfering RNA-mediated decrease of Neu-1 expression strongly support this view. Finally, we report that N-acetyl neuraminic acid can reproduce the effects of elastin peptides on both ERK1/2 activation and pro-MMP-1 production. Altogether, our results indicate that the enzymatic activity of the Neu-1 subunit of the elastin receptor complex is responsible for its signal transduction, presumably through sialic acid generation from undetermined substrates.

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Year:  2007        PMID: 17327233     DOI: 10.1074/jbc.M609505200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  42 in total

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