F-actin depolymerization accelerates clasmatodendrosis via activation of lysosome-derived autophagic astroglial death

H. J. Ryu, J. E. Kim, S. I. Yeo, D. W. Kim, O. S. Kwon, S. Y. Choi, T. C. Kang

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

Clasmatodendrosis is an irreversible astroglial degenerative change, which includes extensive swelling and vacuolization of cell bodies and disintegrated and beaded processes. Since alteration in F-actin level influences on the formation of vacuoles/vesicles during exocytosis/endocytosis in astrocytes, we investigated whether F-actin polymerization involves clasmatodendrosis in the rat hippocampus following status epilepticus (SE). In the present study, vacuoles in clasmatodendrotic astrocytes showed LAMP-1 and LC3-II (a marker for autophagy) immunoreactivity. These findings reveal that clasmatodendrosis may be lysosome-derived autophagic astroglial death. Jasplakinolide (an F-actin stabilizer) infusion significantly decreased the size and the number of medium/large-sized vacuoles in each clasmatodendritic astrocyte accompanied by enhancement of phalloidin signals, as compared to vehicle-infusion. In contrast, latrunculin A (an F-actin-depolymerizing agent) infusion increased the size and the number of medium/large-sized vacuoles, which were dissociated adjacent to cell membrane. Therefore, our findings suggest that F-actin stabilization may inhibit lysosome-derived autophagic astroglial death during clasmatodendrosis.

Original languageEnglish
Pages (from-to)368-373
Number of pages6
JournalBrain Research Bulletin
Volume85
Issue number6
DOIs
StatePublished - 15 Jul 2011

Keywords

  • F-actin
  • Jasplakinolide
  • LAMP-1
  • Latrunculin A
  • LC3-II

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