4.2 Article

Ghrelin suppresses tunicamycin- or thapsigargin-triggered endoplasmic reticulum stress-mediated apoptosis in primary cultured rat cortical neuronal cells

期刊

ENDOCRINE JOURNAL
卷 58, 期 5, 页码 409-420

出版社

JAPAN ENDOCRINE SOC
DOI: 10.1507/endocrj.K10E-396

关键词

Ghrelin; Endoplasmic reticulum stress; Neuroprotection; PI3K; Akt

资金

  1. Clinical Research Institute, East-West Neo Medical Center, of the Kyung Hee University [KHNMC-CRI-2009-01]
  2. Ministry for Health, Welfare, and Family Affairs, Republic of Korea [2010-A100791]
  3. Korea government (MEST) [2010-0016284]

向作者/读者索取更多资源

Ghrelin functions as a neuroprotective agent and rescues neurons from various insults. However, the molecular mechanisms underlying ghrelin neuroprotection remains to be elucidated. An accumulation of unfolded proteins in the endoplasmic reticulum (ER) leads to ER stress and then induces ER stress-mediated cell death. Here, we report that acylated ghrelin inhibited tunicamycin- or thapsigargin-triggered ER stress-induced apoptotic cell death in primary rat cortical neurons. An analysis using a specific inhibitor of phosphatidylinositol-3-kinase (PI3K), LY294002, showed that ghrelin prevented apoptosis via the activation of PI3K signaling pathway. Ghrelin suppressed tunicamycin- or thapsigargin-induced upregulation and nuclear translocation of C/EBP homologous protein (CHOP). Ghrelin also inhibited tunicamycin or thapsigargin induction of PRK-like ER kinase (PERK), eukaryotic translation initiation factor-2 alpha (eIF2 alpha) and activating transcription factor (ATF) 4. Exposure of cells to tunicamycin or thapsigargin resulted in nuclear translocation of forkhead box protein O1 (Foxo1), which was reduced by pretreatment with ghrelin. The protective effect of ghrelin was accompanied by an increased phosphorylation of Akt and glycogen synthase kinase (GSK)-3 beta. Furthermore, ghrelin phosphorylated and inactivated proapoptotic BAD and Foxo1. In addition, phospho-Akt was translocated to the nucleus in response to ghrelin and PI3K inhibition by LY294002 prevented ghrelin-induced effect on phospho-Akt localization. Our study suggests that suppression of CHOP activation via the inhibition of PERK/eIF2 alpha/ATF4 pathway and prevention of Foxo1 activation and nuclear translocation may contribute to ghrelin-mediated neuroprotection during ER stress responses. Our data also suggest that PI3K/Akt-mediated inactivation of GSK-3 beta, BAD and Foxo1 may be associated with the anti-apoptotic effect of ghrelin.

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