Sustained HSP25 Expression Induces Clasmatodendrosis via ER Stress in the Rat Hippocampus

Kim, Ji-Eun and Hyun, Hye-Won and Min, Su-Ji and Kang, Tae-Cheon (2017) Sustained HSP25 Expression Induces Clasmatodendrosis via ER Stress in the Rat Hippocampus. Frontiers in Cellular Neuroscience, 11. ISSN 1662-5102

[thumbnail of pubmed-zip/versions/1/package-entries/fncel-11-00047/fncel-11-00047.pdf] Text
pubmed-zip/versions/1/package-entries/fncel-11-00047/fncel-11-00047.pdf - Published Version

Download (6MB)

Abstract

Heat shock protein (HSP) 25 (murine/rodent 25 kDa, human 27 kDa) is one of the major astroglial HSP families, which has a potent anti-apoptotic factor contributing to a higher resistance of astrocytes to the stressful condition. However, impaired removals of HSP25 decrease astroglial viability. In the present study, we investigated whether HSP25 is involved in astroglial apoptosis or clasmatodendrosis (autophagic astroglial death) in the rat hippocampus induced by status epilepticus (SE). Following SE, HSP25 expression was transiently increased in astrocytes within the dentate gyrus (DG), while it was sustained in CA1 astrocytes until 4 weeks after SE. HSP25 knockdown exacerbated SE-induced apoptotic astroglial degeneration, but mitigated clasmatodendrosis accompanied by abrogation of endoplasmic reticulum (ER) stress without changed seizure susceptibility or severity. These findings suggest that sustained HSP25 induction itself may result in clasmatodendrosis via prolonged ER stress. To the best of our knowledge, the present study demonstrates for the first time the double-edge properties of HSP25 in astroglial death induced by SE.

Item Type: Article
Subjects: Open Article Repository > Medical Science
Depositing User: Unnamed user with email support@openarticledepository.com
Date Deposited: 03 Jul 2023 04:32
Last Modified: 10 May 2024 09:07
URI: http://journal.251news.co.in/id/eprint/1792

Actions (login required)

View Item
View Item