Oligodendrocytes are a lifelong source of nuclear and ribosomal material for neurons in the mouse brain
Mayrhofer, F.; Hanson, A. M.; Falcone, C.; Xiang, Y. K.; Navedo, M. F.; Deng, W.; Chechneva, O.
Show abstract
Nuclear and ribosomal components define cell identity and function by regulating chromatin dynamics, gene expression, and protein turnover. Here we report that in the mouse central nervous system (CNS) under normal conditions, neurons accumulate nuclear and ribosomal material of oligodendrocyte (OL) origin. We show that neuronal accumulation of OL-derived nuclear and ribosomal material is brain area-specific, and in the cortex and hippocampal dentate gyrus gradually propagates during postnatal brain maturation. We further demonstrate that OL-to-neuron material transfer persists throughout adulthood and responds to neuroinflammation. We found that satellite OL of the gray matter form internuclear contacts with receiving neurons in the mouse brain. Similar close internuclear associations between satellite OL and neurons are present in the adult human cortex. Our findings provide the first evidence of wide-spread dynamic and selective OL-to-neuron nuclear and ribosomal material transfer in the mouse CNS and indicate that satellite OL serve as powerful mediators of neuronal function. Equivalent processes may occur in the human CNS and cause neurological disorders when dysregulated. One Sentence SummaryNeurons receive OL-derived nuclear and ribosomal material
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Impaired bidirectional communication between interneurons and oligodendrocyte precursor cells affects cognitive behavior 99%
- Partial rescue of neuronal genes deregulated in Cornelia de Lange Syndrome by cohesin 98%
- A neuron type-specific microexon in Ank3/ankyrin-G modulates calcium activity and neuronal excitability 98%
Similar papers in this journal
- Identification of neural oscillations and epileptiform changes in human brain organoids 98%
- Unexpected contributions of striatal projection neurons coexpressing dopamine D1 and D2 receptors in balancing motor control 97%
- Intersectin and Endophilin condensates prime synaptic vesicles for release site replenishment 97%
Similar papers in this journal
- linc-mipep and linc-wrb encode micropeptides that regulate chromatin accessibility in vertebrate-specific neural cells 98%
- Regulatory and coding sequences of TRNP1 co-evolve with brain size and cortical folding in mammals 97%
- Interaction mapping of endoplasmic reticulum ubiquitin ligases identifies modulators of innate immune signalling 97%
"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.