Homo- and heterodimerization of APP family members promotes intercellular adhesion.

  • Peter Soba
  • Simone Eggert
  • Katja Wagner
  • Hanswalter Zentgraf
  • Katjuscha Siehl
  • Sylvia Kreger
  • Alexander Löwer
  • Andreas Langer
  • Gunter Merdes
  • Renato Paro
  • Colin L Masters
  • Ulrike Müller
  • Stefan Kins
  • Konrad Beyreuther

Abstract

The amyloid precursor protein (APP) plays a central role in Alzheimer's disease, but its physiological function and that of its mammalian paralogs, the amyloid precursor-like proteins 1 and 2 (APLPs), is still poorly understood. APP has been proposed to form dimers, a process that could promote cell adhesion via trans-dimerization. We investigated the dimerization and cell adhesion properties of APP/APLPs and provide evidence that all three paralogs are capable of forming homo- and heterocomplexes. Moreover, we show that trans-interaction of APP family proteins promotes cell-cell adhesion in a homo- and heterotypic fashion and that endogenous APLP2 is required for cell-cell adhesion in mouse embryonic fibroblasts. We further demonstrate interaction of all the three APP family members in mouse brain, genetic interdependence, and molecular interaction of APP and APLPs in synaptically enriched membrane compartments. Together, our results provide evidence that homo- and heterocomplexes of APP/APLPs promote trans-cellular adhesion in vivo.

Bibliografische Daten

OriginalspracheEnglisch
Aufsatznummer20
ISSN0261-4189
StatusVeröffentlicht - 2005
pubmed 16193067