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An extracellular proteolytic cascade promotes neuronal degeneration in the mouse hippocampus

  • Stella E. Tsirka
  • , Andrew D. Rogove
  • , Thomas H. Bugge
  • , Jay L. Degen
  • , Sidney Strickland
  • Stony Brook University
  • Cincinnati Children's Hospital Medical Center

Research output: Contribution to journalArticlepeer-review

367 Scopus citations

Abstract

Mice lacking the serine protease tissue plasminogen activator (tPA) are resistant to excitotoxin-mediated hippocampal neuronal degeneration. We have used genetic and cellular analyses to study the role of tPA in neuronal cell death. Mice deficient for the zymogen plasminogen, a known substrate for tPA, are also resistant to excitotoxins, implicating an extracellular proteolytic cascade in degeneration. The two known components of this cascade, tPA and plasminogen, are both synthesized in the mouse hippocampus. tPA mRNA and protein are present in neurons and microglia, whereas plasminogen mRNA and protein are found exclusively in neurons. tPA-deficient mice exhibit attenuated microglial activation as a reaction to neuronal injury. In contrast, the microglial response of plasminogen-deficient mice was comparable to that of wild-type mice, suggesting a tPA-mediated, plasminogen- independent pathway for activation of microglia. Infusion of inhibitors of the extracellular tPA/plasmin proteolytic cascade into the hippocampus protects neurons against excitotoxic injury, suggesting a novel strategy for intervening in neuronal degeneration.

Original languageEnglish
Pages (from-to)543-552
Number of pages10
JournalJournal of Neuroscience
Volume17
Issue number2
DOIs
StatePublished - 1997

Keywords

  • hippocampus
  • kainate
  • microglia
  • mouse
  • neurons
  • plasminogen
  • tPA

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