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Publication : Drebrin controls scar formation and astrocyte reactivity upon traumatic brain injury by regulating membrane trafficking.

First Author  Schiweck J Year  2021
Journal  Nat Commun Volume  12
Issue  1 Pages  1490
PubMed ID  33674568 Mgi Jnum  J:304968
Mgi Id  MGI:6515162 Doi  10.1038/s41467-021-21662-x
Citation  Schiweck J, et al. (2021) Drebrin controls scar formation and astrocyte reactivity upon traumatic brain injury by regulating membrane trafficking. Nat Commun 12(1):1490
abstractText  The brain of mammals lacks a significant ability to regenerate neurons and is thus particularly vulnerable. To protect the brain from injury and disease, damage control by astrocytes through astrogliosis and scar formation is vital. Here, we show that brain injury in mice triggers an immediate upregulation of the actin-binding protein Drebrin (DBN) in astrocytes, which is essential for scar formation and maintenance of astrocyte reactivity. In turn, DBN loss leads to defective astrocyte scar formation and excessive neurodegeneration following brain injuries. At the cellular level, we show that DBN switches actin homeostasis from ARP2/3-dependent arrays to microtubule-compatible scaffolds, facilitating the formation of RAB8-positive membrane tubules. This injury-specific RAB8 membrane compartment serves as hub for the trafficking of surface proteins involved in astrogliosis and adhesion mediators, such as beta1-integrin. Our work shows that DBN-mediated membrane trafficking in astrocytes is an important neuroprotective mechanism following traumatic brain injury in mice.
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