The type III intermediate filament protein GFAP plays key roles in astrocyte and brain homeostasis. Mutations in GFAP can result in Alexander’s disease (AxD), a severe neurodegenerative disease. Studies in AxD models indicate that oxidative stress may be an important pathogenic factor. Expression of...
GFAP and vimentin deficiency alters gene expression in astrocytes and microglia in wild-type mice and changes the transcriptional response of reactive glia in mouse model for Alzheimer's disease. Reactive astrocytes with an increased expression of intermediate filament (IF) proteins Glial Fibrillary...
Chromosomes and genes are non-randomly arranged within the mammalian cell nucleus. Clustering of genes is of great significance in transcriptional regulation. However, the relevance of gene clustering in their expression during differentiation of neural precursor cells (NPCs) into astrocytes remains...
RNA was purified from GFAP::GFP+CD133+ and GFAP::GFP+CD133+EGFR+ cells isolated from the adult mouse V-SVZ niche (GFAP::GFP mice, Jackson Mice Stock number 003257) 6 samples consisting of two conditions of three biological replicates each were analyzed
Olfactory bulb transcript levels for GFAP transgenic mice compared to wildtype at 3wks and 4mos Keywords = GFAP Keywords = Rosenthal fibers Keywords = Alexander disease Keywords: other