Related Experiment Video
Updated: Jan 19, 2026

Prion Safety Laboratory Swipe Test
Published on: February 14, 2025
The mutational landscape of a prion-like domain
Benedetta Bolognesi1,2, Andre J Faure3, Mireia Seuma3,4
1Center for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Doctor Aiguader 88, 08003, Barcelona, Spain. bbolognesi@ibecbarcelona.eu.
Abstract:
Insoluble protein aggregates are the hallmarks of many neurodegenerative diseases. For example, aggregates of TDP-43 occur in nearly all cases of amyotrophic lateral sclerosis (ALS). However, whether aggregates cause cellular toxicity is still not clear, even in simpler cellular systems. We reasoned that deep mutagenesis might be a powerful approach to disentangle the relationship between aggregation and toxicity. We generated >50,000 mutations in the prion-like domain (PRD) of TDP-43 and quantified their toxicity in yeast cells. Surprisingly, mutations that increase hydrophobicity and aggregation strongly decrease toxicity. In contrast, toxic variants promote the formation of dynamic liquid-like condensates. Mutations have their strongest effects in a hotspot that genetic interactions reveal to be structured in vivo, illustrating how mutagenesis can probe the in vivo structures of unstructured proteins. Our results show that aggregation of TDP-43 is not harmful but protects cells, most likely by titrating the protein away from a toxic liquid-like phase.
Related Concept Videos
06:01Prion Safety Laboratory Swipe Test
Mutations
09:50Real-time Quaking-induced Conversion Assay for Detection of CWD Prions in Fecal Material
10:40Adipose-Derived Mesenchymal Stromal Cells Co-Cultured with Primary Mixed Glia to Reduce Prion-Induced Inflammation
06:38Detection of Abnormal Prion Protein by Immunohistochemistry
03:11Time-Lapse Imaging to Monitor the Transcellular Spreading of Prion-Like Proteins in Transgenic Nematodes

