ArticleActa neuropathologica2024
TMEM106B coding variant is protective and deletion detrimental in a mouse model of tauopathy.
Article in Acta neuropathologica, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 26 citations in OpenAlex.
- Neuronal subtype governs amyloid structure, cellular response, and cognitive outcome in genetically targeted APP mouse models.Molecular neurodegeneration · 2026Article
- Divergent and convergent TMEM106B pathology in murine models of neurodegeneration and human disease.Acta neuropathologica communications · 2025Article
- The role of endolysosomal progranulin and TMEM106B in neurodegenerative diseases.Molecular neurodegeneration · 2025Review
- Chemogenetic neuronal silencing decouples c-Jun activation from cell death in the temporal cortex.The European journal of neuroscience · 2024Article
- TMEM106B amyloid filaments in the Biondi bodies of ependymal cells.Acta neuropathologica · 2024Article
- Cleaved TMEM106B forms amyloid aggregates in central and peripheral nervous systems.Acta neuropathologica communications · 2024Article
- TMEM106B C-terminal fragments aggregate and drive neurodegenerative proteinopathy.bioRxiv : the preprint server for biology · 2024Article
- Physiological and pathological functions of TMEM106B in neurodegenerative diseases.Cellular and molecular life sciences : CMLS · 2024Review
- The TMEM106B T186S coding variant increases neurite arborization and synaptic density in primary hippocampal neurons.Frontiers in neuroscience · 2023Article
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11 authors at 1 institution in 1 country.
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Abstract
TMEM106B is a risk modifier of multiple neurological conditions, where a single coding variant and multiple non-coding SNPs influence the balance between susceptibility and resilience. Two key questions that emerge from past work are whether the lone T185S coding variant contributes to protection, and if the presence of TMEM106B is helpful or harmful in the context of disease. Here, we address both questions while expanding the scope of TMEM106B study from TDP-43 to models of tauopathy. We generated knockout mice with constitutive deletion of TMEM106B, alongside knock-in mice encoding the T186S knock-in mutation (equivalent to the human T185S variant), and crossed both with a P301S transgenic tau model to study how these manipulations impacted disease phenotypes. We found that TMEM106B deletion accelerated cognitive decline, hind limb paralysis, tau pathology, and neurodegeneration. TMEM106B deletion also increased transcriptional correlation with human AD and the functional pathways enriched in KO:tau mice aligned with those of AD. In contrast, the coding variant protected against tau-associated cognitive decline, synaptic impairment, neurodegeneration, and paralysis without affecting tau pathology. Our findings reveal that TMEM106B is a critical safeguard against tau aggregation, and that loss of this protein has a profound effect on sequelae of tauopathy. Our study further demonstrates that the coding variant is functionally relevant and contributes to neuroprotection downstream of tau pathology to preserve cognitive function.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.