Authors
Ilbay, O., Zabinsky, R. A., Lozanoski, T., Jarosz, D. F., Fire, A.
Abstract
Self-replicating protein conformations can encode persistent epigenetic states that underlie prion diseases and contribute to age-related neurodegenerative disorders in mammals. In fungi, such conformers are transmitted through mitosis and meiosis, enabling robust inheritance of diverse phenotypes. Whether analogous transgenerational protein-based inheritance extends beyond unicellular systems to metazoans remains unknown. Here, we address this question in C. elegans, a genetically tractable, short-lived animal well suited for tracking the transmission of heritable information across generations. We found that a yeast prion domain, when fused to a host protein, induced a heritable altered state that arose at elevated temperatures and persisted across generations at lower temperatures. The emergence of this state depended on known prionogenic yeast repeats, while the state itself was reversible and behaved semi-dominantly in crosses, consistent with a protein-based epigenetic mechanism. These findings provide direct evidence that protein domains capable of adopting self-replicating conformers can encode heritable information in an animal.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 01 Oct 2026.
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