Phosphatidylserine exposure by developing astrocytes initiates microglia-mediated developmental cell death
Paisley, C. E.; Sakers, K.; Nagendren, L.; Chen, X.; Mazzoni, F.; Finnemann, S. C.; Eroglu, C.; Kay, J. N.
Show abstract
Developmental cell death is classically attributed to apoptosis, yet in mammalian retina, large numbers of developing astrocytes die non-apoptotically during a defined developmental window. Astrocyte death is important for patterning a cellular template that guides angiogenesis, but the underlying mechanism remains unknown. Here we show that healthy developing astrocytes initiate their own elimination by recruiting microglia via regulated exposure of the membrane lipid phosphatidylserine. Experimentally increasing phosphatidylserine exposure in astrocytes, but not neurons, accelerates their removal by microglia without changing how many astrocytes ultimately survive. This acceleration causes profound vascular defects resembling pathological features of retinopathy of prematurity. Genetic disruption of MFGE8, a phosphatidylserine-binding protein, suppresses microglia-mediated astrocyte killing and prevents vascular pathology despite continued phosphatidylserine exposure. This mechanism extends beyond the retina, because phosphatidylserine also initiates astrocyte death in developing cerebral cortex. Together, these findings identify phosphatidylserine exposure as a developmental signal that times microglia-mediated astrocyte elimination, with essential consequences for neurovascular development.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Retinoschisin deficiency induces persistent aberrant waves of activity affecting neuroglial signaling in the retina 97%
- Cholinergic waves have a modest influence on the transcriptome of retinal ganglion cells 96%
- Midkine-a is required for cell cycle progression of Müller glia during neuronal regeneration 96%
Similar papers in this journal
- Fat1 regulates astrocyte maturation and angiogenesis in the retina 97%
- Fatty acid-binding proteins and fatty acid synthase influence glial reactivity and promote the formation of Müller glia-derived progenitor cells in the avian retina 96%
- NF-κB signaling regulates the formation of proliferating Muller glia-derived progenitor cells in the avian retina. 96%
Similar papers in this journal
- Pten regulates endocytic trafficking of cell adhesion and signaling molecules to pattern the retina 97%
- Pou3f1 orchestrates a gene regulatory network controlling contralateral retinogeniculate projections 96%
- Mettl14-mediated m6A modification ensures the cell cycle progression of late-born retinal progenitor cells 95%
"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.