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  Tau and membranes: interactions that promote folding and condensation

Sallaberry, C. A., Voss, B. J., Majewski, J., Biernat, J., Mandelkow, E., Chi, E. Y., et al. (2021). Tau and membranes: interactions that promote folding and condensation. Frontiers in Cell and Developmental Biology, 9: 725241. doi:10.3389/fcell.2021.725241.

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 Creators:
Sallaberry, Chad A.1, Author
Voss, Barbie J.1, Author
Majewski, Jaroslaw1, Author
Biernat, Jacek1, Author
Mandelkow, Eckhard1, 2, Author           
Chi, Eva Y.1, Author
Vander Zanden, Crystal M.1, Author
Affiliations:
1External Organizations, ou_persistent22              
2Neuronal Cytoskeleton and Alzheimer's Disease, Cooperations, Center of Advanced European Studies and Research (caesar), Max Planck Society, ou_2173677              

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Free keywords: condensation; fibrils; intrinsically disordered protein; membrane; phase separation; polyanionic surface; tau
 Abstract: Tau misfolding and assembly is linked to a number of neurodegenerative diseases collectively described as tauopathies, including Alzheimer's disease (AD) and Parkinson's disease. Anionic cellular membranes, such as the cytosolic leaflet of the plasma membrane, are sites that concentrate and neutralize tau, primarily due to electrostatic interactions with tau's microtubule binding repeat domain (RD). In addition to electrostatic interactions with lipids, tau also has interactions with membrane proteins, which are important for tau's cellular functions. Tau also interacts with lipid tails to facilitate direct translocation across the membrane and can form stable protein-lipid complexes involved in cell-to-cell transport. Concentrated tau monomers at the membrane surface can form reversible condensates, change secondary structures, and induce oligomers, which may eventually undergo irreversible crosslinking and fibril formation. These beta-sheet rich tau structures are capable of disrupting membrane organization and are toxic in cell-based assays. Given the evidence for relevant membrane-based tau assembly, we review the emerging hypothesis that polyanionic membranes may serve as a site for phase-separated tau condensation. Membrane-mediated phase separation may have important implications for regulating tau folding/misfolding, and may be a powerful mechanism to spatially direct tau for native membrane-mediated functions.

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Language(s): eng - English
 Dates: 2021-09
 Publication Status: Published online
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: ISI: 000703701000001
DOI: 10.3389/fcell.2021.725241
PMID: 34621743
 Degree: -

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Title: Frontiers in Cell and Developmental Biology
  Abbreviation : Front Cell Dev Biol
Source Genre: Journal
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Publ. Info: Frontiers Media
Pages: - Volume / Issue: 9 Sequence Number: 725241 Start / End Page: - Identifier: Other: 2296-634X
CoNE: https://pure.mpg.de/cone/journals/resource/2296-634X