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Article Dans Une Revue EMBO Molecular Medicine Année : 2015

A novel mechano‐enzymatic cleavage mechanism underlies transthyretin amyloidogenesis

P Patrizia Mangione
  • Fonction : Auteur
Matteo Degiacomi
  • Fonction : Auteur
Justin Lp Benesch
  • Fonction : Auteur
Ciro Cecconi
  • Fonction : Auteur
Mohsin Naqvi
  • Fonction : Auteur
Julian Gillmore
  • Fonction : Auteur
Philip Hawkins
  • Fonction : Auteur
Carol Robinson
Mark Pepys
  • Fonction : Auteur
Vittorio Bellotti
  • Fonction : Auteur

Résumé

The mechanisms underlying transthyretin-related amyloidosis in vivo remain unclear. The abundance of the 49-127 transthyretin fragment in ex vivo deposits suggests that a proteolytic cleavage has a crucial role in destabilizing the tetramer and releasing the highly amyloidogenic 49-127 truncated protomer. Here, we investigate the mechanism of cleavage and release of the 49-127 fragment from the prototypic S52P variant, and we show that the proteolysis/fibrillogenesis pathway is common to several amyloidogenic variants of transthyretin and requires the action of biomechanical forces provided by the shear stress of physiological fluid flow. Crucially, the non-amyloidogenic and protective T119M variant is neither cleaved nor generates fibrils under these conditions. We propose that a mechano-enzymatic mechanism mediates transthyretin amyloid fibrillogenesis in vivo. This may be particularly important in the heart where shear stress is greatest; indeed, the 49-127 transthyretin fragment is particularly abundant in cardiac amyloid. Finally, we show that existing transthyretin stabilizers, including tafamidis, inhibit proteolysis-mediated transthyretin fibrillogenesis with different efficiency in different variants; however, inhibition is complete only when both binding sites are occupied.
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Dates et versions

hal-02335545 , version 1 (19-03-2021)

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Citer

Julien Marcoux, P Patrizia Mangione, Riccardo Porcari, Matteo Degiacomi, Guglielmo Verona, et al.. A novel mechano‐enzymatic cleavage mechanism underlies transthyretin amyloidogenesis. EMBO Molecular Medicine, 2015, 7 (10), pp.1337-1349. ⟨10.15252/emmm.201505357⟩. ⟨hal-02335545⟩
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