Crespo2012 - Kinetics of Amyloid Fibril Formation

Model Identifier
BIOMD0000000531
Short description
Crespo2012 - Kinetics of Amyloid Fibril Formation

This model is described in the article:

Crespo R, Rocha FA, Damas AM, Martins PM.
J. Biol. Chem. 2012 Aug; 287(36): 30585-30594

Abstract:

Associated with neurodegenerative disorders such as Alzheimer, Parkinson, or prion diseases, the conversion of soluble proteins into amyloid fibrils remains poorly understood. Extensive "in vitro" measurements of protein aggregation kinetics have been reported, but no consensus mechanism has emerged until now. This contribution aims at overcoming this gap by proposing a theoretically consistent crystallization-like model (CLM) that is able to describe the classic types of amyloid fibrillization kinetics identified in our literature survey. Amyloid conversion represented as a function of time is shown to follow different curve shapes, ranging from sigmoidal to hyperbolic, according to the relative importance of the nucleation and growth steps. Using the CLM, apparently unrelated data are deconvoluted into generic mechanistic information integrating the combined influence of seeding, nucleation, growth, and fibril breakage events. It is notable that this complex assembly of interdependent events is ultimately reduced to a mathematically simple model, whose two parameters can be determined by little more than visual inspection. The good fitting results obtained for all cases confirm the CLM as a good approximation to the generalized underlying principle governing amyloid fibrillization. A perspective is presented on possible applications of the CLM during the development of new targets for amyloid disease therapeutics.

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Format
SBML (L2V4)
Related Publication
  • A generic crystallization-like model that describes the kinetics of amyloid fibril formation.
  • Rosa Crespo, Fernando A Rocha, Ana M Damas, Pedro M Martins
  • The Journal of biological chemistry , 8/ 2012 , Volume 287 , Issue 36 , pages: 30585-30594 , PubMed ID: 22767606
Contributors
Submitter of the first revision: Audald Lloret i Villas
Submitter of this revision: Lucian Smith
Curator: Lucian Smith
Modellers: administrator, Audald Lloret i Villas

Metadata information

is (2 statements)
BioModels Database BIOMD0000000531
BioModels Database MODEL1407170000

isDescribedBy (1 statement)
PubMed 22767606

hasTaxon (1 statement)
Taxonomy Homo sapiens

isVersionOf (2 statements)
hasProperty (2 statements)
Human Disease Ontology Alzheimer's disease
Mathematical Modelling Ontology Ordinary differential equation model


Curation status
Curated


Connected external resources