Protein aggregation is routinely suppressed by the proteostasis network (PN), a collection of macromolecular machines that operate in diverse ways to maintain proteome integrity across subcellular compartments and between tissues to ensure a healthy life span.
First-pass extracted concept
proteostasis network
Aliases
PN
Evidence Snippets
Supporting Sources
Linked Claims
Disease susceptibility may arise from early changes in the composition and activity of the proteostasis network.
We explore emerging evidence that disease susceptibility arises from early changes in the composition and activity of the PN.
Loss of proteostasis is a common feature of aging and disease and is characterized by nonnative protein aggregates in tissues.
Loss of protein homeostasis (proteostasis) is a common feature of aging and disease that is characterized by the appearance of nonnative protein aggregates in various tissues.
Disruption of the proteostasis network and related stress response pathways contributes to disease initiation and progression.
We review the composition, function, and organizational properties of the PN ... and discuss the mechanisms by which disruption of the PN, and related stress response pathways, contributes to the initiation and progression of disease.
The proteostasis network suppresses protein aggregation and maintains proteome integrity across subcellular compartments and between tissues.
Protein aggregation is routinely suppressed by the proteostasis network (PN), a collection of macromolecular machines that operate in diverse ways to maintain proteome integrity across subcellular compartments and between tissues to ensure a healthy life span.
A more complete understanding of the temporal and spatial properties of the proteostasis network may improve development of treatments for protein conformational diseases.
We propose that a more complete understanding of the temporal and spatial properties of the PN will enhance our ability to develop effective treatments for protein conformational diseases.