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Reggie/flotillin proteins are organized into stable tetramers in membrane microdomains

  • Gonzalo P. Solis
  • , Maja Hoegg
  • , Christina Munderloh
  • , Yvonne Schrock
  • , Edward Malaga-Trillo
  • , Eric Rivera-Milla
  • , Claudia A.O. Stuermer
  • University of Konstanz
  • University of Calgary

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

168 Citas (Scopus)

Resumen

Reggie-1 and -2 proteins (flotillin-2 and -1 respectively) form their own type of non-caveolar membrane microdomains, which are involved in important cellular processes such as T-cell activation, phagocytosis and signalling mediated by the cellular prion protein and insulin; this is consistent with the notion that reggie microdomains promote protein assemblies and signalling. While it is generally known that membrane microdomains contain large multi-protein assemblies, the exact organization of reggie microdomains remains elusive. Using chemical cross-linking approaches, we have demonstrated that reggie complexes are composed of homoand hetero-tetramers of reggie-1 and -2. Moreover, native reggie oligomers are indeed quite stable, since non-cross-linked tetramers are resistant to 8 M urea treatment. We also show that oligomerization requires the C-terminal but not the N-terminal halves of reggie-1 and -2. Using deletion constructs, we analysed the functional relevance of the three predicted coiled-coil stretches present in the C-terminus of reggie-1. We confirmed experimentally that reggie-1 tetramerization is dependent on the presence of coiled-coil 2 and, partially, of coiled-coil 1. Furthermore, since depletion of reggie-1 by siRNA (small interfering RNA) silencing induces proteasomal degradation of reggie-2, we conclude that the protein stability of reggie-2 depends on the presence of reggie-1. Our data indicate that the basic structural units of reggie microdomains are reggie homo- and hetero-tetramers, which are dependent on the presence of reggie-1.

Idioma originalInglés
Páginas (desde-hasta)313-322
Número de páginas10
PublicaciónBiochemical Journal
Volumen403
N.º2
DOI
EstadoPublicada - 15 abr. 2007
Publicado de forma externa

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