Regulation of Age-Related Protein Toxicity

Anita Pras, Ellen A A Nollen*

*Corresponding author voor dit werk

    Onderzoeksoutputpeer review

    15 Citaten (Scopus)
    98 Downloads (Pure)

    Samenvatting

    Proteome damage plays a major role in aging and age-related neurodegenerative diseases. Under healthy conditions, molecular quality control mechanisms prevent toxic protein misfolding and aggregation. These mechanisms include molecular chaperones for protein folding, spatial compartmentalization for sequestration, and degradation pathways for the removal of harmful proteins. These mechanisms decline with age, resulting in the accumulation of aggregation-prone proteins that are harmful to cells. In the past decades, a variety of fast- and slow-aging model organisms have been used to investigate the biological mechanisms that accelerate or prevent such protein toxicity. In this review, we describe the most important mechanisms that are required for maintaining a healthy proteome. We describe how these mechanisms decline during aging and lead to toxic protein misassembly, aggregation, and amyloid formation. In addition, we discuss how optimized protein homeostasis mechanisms in long-living animals contribute to prolonging their lifespan. This knowledge might help us to develop interventions in the protein homeostasis network that delay aging and age-related pathologies.

    Originele taal-2English
    Artikelnummer637084
    Pagina's (van-tot)1-15
    Aantal pagina's15
    TijdschriftFrontiers in Cell and Developmental Biology
    Volume9
    DOI's
    StatusPublished - 5-mrt.-2021

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