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Publication : A tau homeostasis signature is linked with the cellular and regional vulnerability of excitatory neurons to tau pathology.

First Author  Fu H Year  2019
Journal  Nat Neurosci Volume  22
Issue  1 Pages  47-56
PubMed ID  30559469 Mgi Jnum  J:271313
Mgi Id  MGI:6279323 Doi  10.1038/s41593-018-0298-7
Citation  Fu H, et al. (2019) A tau homeostasis signature is linked with the cellular and regional vulnerability of excitatory neurons to tau pathology. Nat Neurosci 22(1):47-56
abstractText  Excitatory neurons are preferentially impaired in early Alzheimer's disease but the pathways contributing to their relative vulnerability remain largely unknown. Here we report that pathological tau accumulation takes place predominantly in excitatory neurons compared to inhibitory neurons, not only in the entorhinal cortex, a brain region affected in early Alzheimer's disease, but also in areas affected later by the disease. By analyzing RNA transcripts from single-nucleus RNA datasets, we identified a specific tau homeostasis signature of genes differentially expressed in excitatory compared to inhibitory neurons. One of the genes, BCL2-associated athanogene 3 (BAG3), a facilitator of autophagy, was identified as a hub, or master regulator, gene. We verified that reducing BAG3 levels in primary neurons exacerbated pathological tau accumulation, whereas BAG3 overexpression attenuated it. These results define a tau homeostasis signature that underlies the cellular and regional vulnerability of excitatory neurons to tau pathology.
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