Z-α1-antitrypsin polymers impose molecular filtration in the endoplasmic reticulum after undergoing phase transition to a solid state
Author
Chambers, Joseph E.; Zubkov, Nikita; Kubánková, Markéta; Nixon-Abell, Jonathon; Mela, Ioanna; Abreu, Susana; Schwiening, Max; Lavarda, Giulia


Entity
UAM. Departamento de Química OrgánicaPublisher
American Association for the Advancement of ScienceDate
2022-04-08Citation
10.1126/sciadv.abm2094
Science Advances 8.14 (2022): eabm2094
ISSN
2375-2548 (online)DOI
10.1126/sciadv.abm2094Project
Gobierno de España. PID2020-116490GB-I00Editor's Version
10.1126/sciadv.abm2094Subjects
Antitrypsin; Endoplasmic Reticulum; Hepatocytes; Misfolding; Pathogenics; Protein Matrix; QuímicaRights
© 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of ScienceAbstract
Misfolding of secretory proteins in the endoplasmic reticulum (ER) features in many human diseases. In α1-antitrypsin deficiency, the pathogenic Z variant aberrantly assembles into polymers in the hepatocyte ER, leading to cirrhosis. We show that α1-antitrypsin polymers undergo a liquid:solid phase transition, forming a protein matrix that retards mobility of ER proteins by size-dependent molecular filtration. The Z-α1-antitrypsin phase transition is promoted during ER stress by an ATF6-mediated unfolded protein response. Furthermore, the ER chaperone calreticulin promotes Z-α1-antitrypsin solidification and increases protein matrix stiffness. Single-particle tracking reveals that solidification initiates in cells with normal ER morphology, previously assumed to represent a healthy pool. We show that Z-α1-antitrypsin–induced hypersensitivity to ER stress can be explained by immobilization of ER chaperones within the polymer matrix. This previously unidentified mechanism of ER dysfunction provides a template for understanding a diverse group of related proteinopathies and identifies ER chaperones as potential therapeutic targets
Files in this item
Google Scholar:Chambers, Joseph E.
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Zubkov, Nikita
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Kubánková, Markéta
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Nixon-Abell, Jonathon
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Mela, Ioanna
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Abreu, Susana
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Schwiening, Max
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Lavarda, Giulia
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López Duarte, Ismael
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Dickens, Jennifer A.
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Torres Cebada, Tomás
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Kaminski, Clemens F.
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Holt, Liam J.
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Avezov, Edward
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Huntington, James A.
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St George-Hyslop, Peter
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Kuimova, Marina K.
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Marciniak, Stefan J.
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