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MEG3 activates necroptosis in human neuron xenografts modeling Alzheimer's disease

Authors :
Balusu, Sriram
Horré, Katrien
Thrupp, Nicola
Craessaerts, Katleen
Snellinx, An
Serneels, Lutgarde
T'Syen, Dries
Chrysidou, Iordana
Arranz, Amaia M
Sierksma, Annerieke
Simrén, Joel
Karikari, Thomas K
Zetterberg, Henrik
Chen, Wei-Ting
Thal, Dietmar Rudolf
Salta, Evgenia
Fiers, Mark
De Strooper, Bart
Balusu, Sriram
Horré, Katrien
Thrupp, Nicola
Craessaerts, Katleen
Snellinx, An
Serneels, Lutgarde
T'Syen, Dries
Chrysidou, Iordana
Arranz, Amaia M
Sierksma, Annerieke
Simrén, Joel
Karikari, Thomas K
Zetterberg, Henrik
Chen, Wei-Ting
Thal, Dietmar Rudolf
Salta, Evgenia
Fiers, Mark
De Strooper, Bart
Source :
Science vol.381 (2023) date: 2023-09-15 nr.6663 p.1176-1182 [ISSN 0036-8075]
Publication Year :
2023

Abstract

Neuronal cell loss is a defining feature of Alzheimer's disease (AD), but the underlying mechanisms remain unclear. We xenografted human or mouse neurons into the brain of a mouse model of AD. Only human neurons displayed tangles, Gallyas silver staining, granulovacuolar neurodegeneration (GVD), phosphorylated tau blood biomarkers, and considerable neuronal cell loss. The long noncoding RNA MEG3 was strongly up-regulated in human neurons. This neuron-specific long noncoding RNA is also up-regulated in AD patients. MEG3 expression alone was sufficient to induce necroptosis in human neurons in vitro. Down-regulation of MEG3 and inhibition of necroptosis using pharmacological or genetic manipulation of receptor-interacting protein kinase 1 (RIPK1), RIPK3, or mixed lineage kinase domain-like protein (MLKL) rescued neuronal cell loss in xenografted human neurons. This model suggests potential therapeutic approaches for AD and reveals a human-specific vulnerability to AD.

Details

Database :
OAIster
Journal :
Science vol.381 (2023) date: 2023-09-15 nr.6663 p.1176-1182 [ISSN 0036-8075]
Notes :
DOI: 10.1126/science.abp9556, Science vol.381 (2023) date: 2023-09-15 nr.6663 p.1176-1182 [ISSN 0036-8075], English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1400064134
Document Type :
Electronic Resource