Aggregation-prone Proteins

Aggregation-prone proteins are proteins that tend to misfold or assemble into insoluble oligomers and larger aggregates, making them important in cell biology and protein homeostasis. Changes in sequence, folding conditions, concentration, or cellular stress can expose normally buried hydrophobic regions, allowing protein molecules to associate through intermolecular interactions and form oligomers, fibrils, or amorphous deposits. Studying these processes helps researchers distinguish soluble intermediates from mature aggregates, examine how molecular chaperones and degradation pathways limit accumulation, and understand how disrupted proteostasis can impair cells. In biology, aggregation-prone proteins provide models for investigating protein folding, cellular quality control, and aggregation-associated disease, while informing strategies to monitor or prevent harmful assemblies.

Aggregation-prone Proteins - Related Videos

Research

JoVE Journal - Biology

In Vitro Aggregation Assays Using Hyperphosphorylated Tau Protein

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Cited by 21 •

2015

Unmodified and hyperphosphorylated tau proteins were used in two in vitro aggregation assays to reveal the hyperphosphorylation-dependent fast aggregation kinetics. These assays pave the way for future screens for compounds that can modulate the propensity of hyperphosphorylated tau to form fibrils that underlie the progression of Alzheimer’s disease.

Methods to Study Changes in Inherent Protein Aggregation with Age in Caenorhabditis elegans

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Cited by 7 •

2017

The goal of the method presented here is to explore protein aggregation during normal aging in the model organism C. elegans. The protocol represents a powerful tool to study the highly insoluble large aggregates that form with age and to determine how changes in proteostasis impact protein aggregation.

Misfolding-Prone Protein Degradation Assay: A Technique to Monitor Misfolded Protein Degradation Using Cycloheximide Treatment and Detergent Fractionation

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2025

This video describes a degradation assay for misfolded proteins using cycloheximide treatment along with detergent fractionation. This method aids in studying the dynamics of misfolded proteins and uncovering the in-depth mechanisms of protein turnover.

Protein Aggregate Formation Assay: A Method to Detect and Quantify Protein Aggregation in Cultured Cells upon Induction by Proteasome Inhibitor

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2025

In this video, we demonstrate a cell-based protein aggregation assay using proteasome inhibitors, which block proteasome activity, preventing misfolded, mutant proteins, fused to a fluorescent label, from undergoing ubiquitin-dependent proteasomal degradation, leading to their accumulation within the cell cytoplasm. The protein aggregates are then visualized and quantified by fluorescence microscopy.

Detection of Aggregation-Prone Behavior in Mutant P53 V157F Breast Cancer Cells Using Multipoint Thioflavin T Fluorescence

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2025

Hs578T breast cancer cells harboring the p53 V157F mutation exhibit significantly higher Thioflavin T fluorescence compared to MCF7 cells, indicating enhanced protein aggregation. Multipoint fluorescence measurements improve detection accuracy and reliability in identifying β-sheet-rich aggregates, underscoring the importance of aggregation-prone p53 mutations in cancer research and the development of therapeutic strategies.

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