RRC ID 85374
著者 Oka M, Nakajima S, Suzuki E, Yamamoto S, Ando K.
タイトル Glucose uptake in pigment glia suppresses Tau-induced inflammation and photoreceptor degeneration.
ジャーナル Dis Model Mech
Abstract Brain inflammation contributes to the pathogenesis of neurodegenerative diseases, such as Alzheimer's disease (AD). Glucose hypometabolism and glial activation are pathological features seen in AD brains; however, the connection between the two is not fully understood. Using a Drosophila model of AD, we identified that glucose metabolism in glia plays a critical role in neuroinflammation under disease conditions. Expression of human MATP (hereafter referred to as Tau) in the retinal cells, including photoreceptor neurons and pigment glia, causes photoreceptor degeneration accompanied by the formation of dark-stained round inclusion-like structures and swelling of the lamina cortex. We found that inclusion-like structures are formed by glial phagocytosis, and swelling of the laminal cortex correlates with the expression of antimicrobial peptides. Coexpression of human glucose transporter 3 (SLC2A3, hereafter referred to as GLUT3) with Tau in the retina does not affect Tau levels but suppresses these inflammatory responses and photoreceptor degeneration. We also found that expression of GLUT3, specifically in the pigment glia, is sufficient to suppress inflammatory phenotypes and mitigate photoreceptor degeneration in the Tau-expressing retina. Our results suggest that glial glucose metabolism contributes to inflammatory responses and neurodegeneration in tauopathy.
巻・号 18(4)
公開日 2025-4-1
DOI 10.1242/dmm.052057
PII 367846
PMID 40151148
PMC PMC12067088
MeSH Alzheimer Disease / metabolism Alzheimer Disease / pathology Animals Disease Models, Animal Drosophila Proteins / metabolism Drosophila melanogaster* / metabolism Glucose* / metabolism Glucose Transporter Type 3 / metabolism Humans Inflammation* / metabolism Inflammation* / pathology Neuroglia* / metabolism Neuroglia* / pathology Phagocytosis Photoreceptor Cells / metabolism Photoreceptor Cells / pathology Photoreceptor Cells, Invertebrate* / metabolism Photoreceptor Cells, Invertebrate* / pathology Retinal Degeneration* / metabolism Retinal Degeneration* / pathology tau Proteins* / metabolism
IF 4.651
リソース情報
ショウジョウバエ HMJ30231 HMJ23355