Intercellular Transmission of a Synthetic Bacterial Cytotoxic Prion-Like Protein in Mammalian Cells

Author:

Revilla-García Aida1,Fernández Cristina1,Moreno-del Álamo María1,de los Ríos Vivian2,Vorberg Ina M.3ORCID,Giraldo Rafael1ORCID

Affiliation:

1. Department of Cellular and Molecular Biology, Centro de Investigaciones Biológicas (CIB-CSIC), Madrid, Spain

2. Proteomics Facility, Centro de Investigaciones Biológicas (CIB-CSIC), Madrid, Spain

3. German Center for Neurodegenerative Diseases (DZNE), Bonn, Germany

Abstract

Proteotoxic amyloid seeds can be transmitted between mammalian cells, arguing that the intercellular exchange of prion-like protein aggregates can be a common phenomenon. RepA-WH1 is derived from a bacterial intracellular functional amyloid protein, engineered to become cytotoxic in Escherichia coli . Here, we have studied if such bacterial aggregates can also be transmitted to, and become cytotoxic to, mammalian cells. We demonstrate that RepA-WH1 is capable of entering naive cells, thereby inducing the cytotoxic aggregation of a soluble RepA-WH1 variant expressed in the cytosol, following the same trend that had been described in bacteria. These findings highlight the universality of one of the central principles underlying prion biology: No matter the biological origin of a given prion-like protein, it can be transmitted to a phylogenetically unrelated recipient cell, provided that the latter expresses a soluble protein onto which the incoming protein can readily template its amyloid conformation.

Funder

MINECO-AEI

MINECO-AEI short-term

Publisher

American Society for Microbiology

Subject

Virology,Microbiology

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