Mitochondrially Transcribed dsRNA Mediates Manganese-induced Neuroinflammation
Gokhale, A.; Mendez-Vazquez, H.; Sampson, M. M.; Moctezuma, F. G. R.; Harbuzariu, A.; Sing, A.; Zlatic, S. A.; Roberts, A. M.; Prajapati, M.; Roberts, B. R.; Bartnikas, T. B.; Wood, L. B.; Sloan, S. A.; Faundez, V.; Werner, E.
Show abstract
Manganese (Mn) is an essential trace element required for various biological functions, but excessive Mn levels are neurotoxic and lead to significant health concerns. The mechanisms underlying Mn-induced neurotoxicity remain poorly understood. Neuropathological studies of affected brain regions reveal astrogliosis, and neuronal loss, along with evidence of neuroinflammation. Here, we present a novel Mn-dependent mechanism linking mitochondrial dysfunction to neuroinflammation. We found that Mn disrupts mitochondrial transcriptome processing, resulting in the accumulation of complementary RNAs that form double-stranded RNA (dsRNA). This dsRNA is released to the cytoplasm, where it activates cytosolic sensor pathways, triggering type I interferon responses and inflammatory cytokine production. This mechanism is evident in 100-day human cerebral organoids, where Mn-induced inflammatory responses are observed predominantly in mature astrocytes. Similar effects were observed in the transcriptome and cytokine profile of female and male mouse brains carrying mutations in the SLC30A10 gene, a model of hypermanganesemia with dystonia1 disorder. These findings highlight a previously unrecognized role for mitochondrial dsRNA in Mn-induced neuroinflammation and provide insights into the molecular pathogenesis of manganism. We propose that this mitochondrial dsRNA-induced inflammatory pathway could be active in other diseases caused by environmental or genetic factors.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The transcriptional response of cortical neurons to concussion reveals divergent fates after injury 95%
- Targeted Antisense Oligonucleotide Treatment Rescues Developmental Alterations in Spinal Muscular Atrophy Organoids 95%
- Gsta4 controls apoptosis of differentiating adult oligodendrocytes during homeostasis and remyelination via the mitochondria-associated Fas/Casp8/Bid-axis 95%
Similar papers in this journal
- Chronic exposure to glucocorticoids amplifies inhibitory neuron cell fate during human neurodevelopment in organoids 96%
- Neurons burdened by DNA double strand breaks incite microglia activation through antiviral-like signaling in neurodegeneration. 95%
- GTF2I dosage regulates neuronal differentiation and social behavior in 7q11.23 neurodevelopmental disorders 94%
Similar papers in this journal
- Hypoxia-inducible factor 1 protects neurons from Sarm1-mediated neurodegeneration 95%
- Triglyceride metabolism controls inflammation and APOE4-associated disease states in microglia 94%
- Jedi-1/MEGF12-mediated phagocytosis controls the pro-neurogenic properties of microglia in the ventricular-subventricular zone 94%
Similar papers in this journal
- SARS-CoV-2 promotes microglial synapse elimination in human brain organoids 95%
- Cortical Organoids Model Early Brain Development Disrupted by 16p11.2 Copy Number Variants in Autism 95%
- Analyses of the Autism-associated Neuroligin-3 R451C Mutation in Human Neurons Reveals a Gain-of-Function Synaptic Mechanism 94%
Similar papers in this journal
- Simultaneous CRISPR screening and spatial transcriptomics reveals intracellular, intercellular, and functional transcriptional circuits. 94%
- Large neutral amino acid levels tune perinatal neuronal excitability and survival 94%
- CRISPR screens in iPSC-derived neurons reveal principles of tau proteostasis 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.