Protein aggregation constitutes a constant threat for the living cell as is demonstrated by the several pathologies in which the mechanisms to prevent it fail. It is therefore a question of increasing importance to understand in detail the defence strategies. Here we discuss how molecular interactions can represent a general strategy to prevent aggregation. This view generalizes the more specific paradigm that suggests a competition between folding and aggregation, and allows to include both intrinsically unfolded proteins and proteins that aggregate also under native conditions. We analyze the factors that influence the balance between the two competing pathways and suggest new perspectives to increase our understanding of misfolding pathologies.

The two faces of Janus: Functional interactions and protein aggregation

PASTORE, ANNALISA;
2012-01-01

Abstract

Protein aggregation constitutes a constant threat for the living cell as is demonstrated by the several pathologies in which the mechanisms to prevent it fail. It is therefore a question of increasing importance to understand in detail the defence strategies. Here we discuss how molecular interactions can represent a general strategy to prevent aggregation. This view generalizes the more specific paradigm that suggests a competition between folding and aggregation, and allows to include both intrinsically unfolded proteins and proteins that aggregate also under native conditions. We analyze the factors that influence the balance between the two competing pathways and suggest new perspectives to increase our understanding of misfolding pathologies.
2012
Biochemistry & Biophysics focuses on the structure and chemistry of biomolecules and covers all aspects of basic biochemistry/biophysics, including molecular structure, enzyme kinetics and protein-protein interaction; this category also contains cross-disciplinary resources focused on a specific class of biological molecules, e.g., nucleic acids, steroids, magnesium, growth factors, free radicals, bio-membranes, and peptides. Excluded are resources dealing with the application of biochemical techniques to specific topics listed elsewhere in CC/LS. Resources with a strong emphasis on the integration of biochemical pathways (such as signal transduction or molecular motors) at the cellular level are placed in the Cell & Developmental Biology category.
Esperti anonimi
Inglese
Internazionale
STAMPA
22
1
30
37
8
no
2
info:eu-repo/semantics/article
262
Pastore, Annalisa; Temussi, P. A.
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1106782
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