Literature DB >> 32571879

Comparative study of the stabilities of synthetic in vitro and natural ex vivo transthyretin amyloid fibrils.

Sara Raimondi1, P Patrizia Mangione1,2, Guglielmo Verona2, Diana Canetti2, Paola Nocerino2, Loredana Marchese1, Rebecca Piccarducci2,3, Valentina Mondani1,2, Giulia Faravelli1, Graham W Taylor2, Julian D Gillmore4, Alessandra Corazza2,5,6, Mark B Pepys2,4, Sofia Giorgetti7,6, Vittorio Bellotti7,2.   

Abstract

Systemic amyloidosis caused by extracellular deposition of insoluble fibrils derived from the pathological aggregation of circulating proteins, such as transthyretin, is a severe and usually fatal condition. Elucidation of the molecular pathogenic mechanism of the disease and discovery of effective therapies still represents a challenging medical issue. The in vitro preparation of amyloid fibrils that exhibit structural and biochemical properties closely similar to those of natural fibrils is central to improving our understanding of the biophysical basis of amyloid formation in vivo and may offer an important tool for drug discovery. Here, we compared the morphology and thermodynamic stability of natural transthyretin fibrils with those of fibrils generated in vitro either using the common acidification procedure or primed by limited selective cleavage by plasmin. The free energies for fibril formation were -12.36, -8.10, and -10.61 kcal mol-1, respectively. The fibrils generated via plasmin cleavage were more stable than those prepared at low pH and were thermodynamically and morphologically similar to natural fibrils extracted from human amyloidotic tissue. Determination of thermodynamic stability is an important tool that is complementary to other methods of structural comparison between ex vivo fibrils and fibrils generated in vitro Our finding that fibrils created via an in vitro amyloidogenic pathway are structurally similar to ex vivo human amyloid fibrils does not necessarily establish that the fibrillogenic pathway is the same for both, but it narrows the current knowledge gap between in vitro models and in vivo pathophysiology.
© 2020 Raimondi et al.

Entities:  

Keywords:  V122I TTR mutation; amyloid; fibril; mechano-enzymatic mechanism; protein aggregation; protein misfolding; protein stability; systemic amyloidosis; thermodynamics; transthyretin

Mesh:

Substances:

Year:  2020        PMID: 32571879      PMCID: PMC7450123          DOI: 10.1074/jbc.RA120.014026

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


  32 in total

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  2 in total

1.  AA amyloid fibrils from diseased tissue are structurally different from in vitro formed SAA fibrils.

Authors:  Akanksha Bansal; Matthias Schmidt; Matthies Rennegarbe; Christian Haupt; Falk Liberta; Sabrina Stecher; Ioana Puscalau-Girtu; Alexander Biedermann; Marcus Fändrich
Journal:  Nat Commun       Date:  2021-02-12       Impact factor: 14.919

2.  Plasmin activity promotes amyloid deposition in a transgenic model of human transthyretin amyloidosis.

Authors:  Ivana Slamova; Rozita Adib; Stephan Ellmerich; Michal R Golos; Janet A Gilbertson; Nicola Botcher; Diana Canetti; Graham W Taylor; Nigel Rendell; Glenys A Tennent; Guglielmo Verona; Riccardo Porcari; P Patrizia Mangione; Julian D Gillmore; Mark B Pepys; Vittorio Bellotti; Philip N Hawkins; Raya Al-Shawi; J Paul Simons
Journal:  Nat Commun       Date:  2021-12-07       Impact factor: 14.919

  2 in total

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