Literature DB >> 35082119

Disrupting the Balance of Protein Quality Control Protein UBQLN2 Accelerates Tau Proteinopathy.

Julia E Gerson1, Stephanie Sandoval-Pistorius1,2, Jacqueline P Welday1, Aleija Rodriguez1, Jordan D Gregory1, Nyjerus Liggans1, Kylie Schache1, Xingli Li1, Hanna Trzeciakiewicz1, Sami Barmada1, Lisa M Sharkey1, Henry L Paulson3.   

Abstract

Tau protein accumulation drives toxicity in several neurodegenerative disorders. To better understand the pathways regulating tau homeostasis in disease, we investigated the role of ubiquilins (UBQLNs)-a class of proteins linked to ubiquitin-mediated protein quality control (PQC) and various neurodegenerative diseases-in regulating tau. Cell-based assays identified UBQLN2 as the primary brain-expressed UBQLN to regulate tau. UBQLN2 efficiently lowered wild-type tau levels regardless of aggregation, suggesting that UBQLN2 interacts with and regulates tau protein under normal conditions or early in disease. Moreover, UBQLN2 itself proved to be prone to accumulation as insoluble protein in male and female tau transgenic mice and the human tauopathy progressive supranuclear palsy. Genetic manipulation of UBQLN2 in a tauopathy mouse model demonstrated that a physiological UBQLN2 balance is required for tau homeostasis. UBQLN2 overexpression exacerbated phosphorylated tau pathology and toxicity in mice expressing P301S mutant tau, whereas P301S mice lacking UBQLN2 showed significantly reduced phosphorylated tau. Further studies support the view that an imbalance of UBQLN2 perturbs ubiquitin-dependent PQC and autophagy. We conclude that changes in UBQLN2 levels, whether because of pathogenic mutations or secondary to disease states, such as tauopathy, contribute to proteostatic imbalances that exacerbate neurodegeneration.SIGNIFICANCE STATEMENT We defined a role for the protein quality control protein Ubiquilin-2 (UBQLN2), in age-related neurodegenerative tauopathies. This group of disorders is characterized by the accumulation of tau protein aggregates, which differ when UBQLN2 levels are altered. Given the lack of effective disease-modifying therapies for tauopathies and the function of UBQLN2 in handling various disease-linked proteins, we explored the role of UBQLN2 in regulating tau. We found that UBQLN2 reduced tau levels in cell models but behaved differently in mouse brain, where it accelerated mutant tau pathology and tau-mediated toxicity. A better understanding of the diverse functions of regulatory proteins like UBQLN2 can elucidate some of the causative factors in neurodegenerative disease and outline new routes to therapeutic intervention.
Copyright © 2022 the authors.

Entities:  

Keywords:  UBQLN2; aggregation; autophagy; proteostasis; tau; ubiquitin proteasome system

Mesh:

Substances:

Year:  2022        PMID: 35082119      PMCID: PMC8896546          DOI: 10.1523/JNEUROSCI.1116-21.2021

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.709


  54 in total

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3.  Differential recruitment of UBQLN2 to nuclear inclusions in the polyglutamine diseases HD and SCA3.

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6.  Mutation-dependent aggregation and toxicity in a Drosophila model for UBQLN2-associated ALS.

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7.  Lack of association between UBQLN1 and Alzheimer disease.

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8.  Ubiquitin Modulates Liquid-Liquid Phase Separation of UBQLN2 via Disruption of Multivalent Interactions.

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9.  UBQLN2 Mediates Autophagy-Independent Protein Aggregate Clearance by the Proteasome.

Authors:  Roland Hjerpe; John S Bett; Matthew J Keuss; Alexandra Solovyova; Thomas G McWilliams; Clare Johnson; Indrajit Sahu; Joby Varghese; Nicola Wood; Melanie Wightman; Georgina Osborne; Gillian P Bates; Michael H Glickman; Matthias Trost; Axel Knebel; Francesco Marchesi; Thimo Kurz
Journal:  Cell       Date:  2016-07-28       Impact factor: 41.582

10.  RNA stores tau reversibly in complex coacervates.

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Journal:  PLoS Biol       Date:  2017-07-06       Impact factor: 8.029

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  1 in total

1.  Role of Ubiquilin-2 in Proteostasis and Tau Aggregation in Tauopathies.

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  1 in total

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