ORP150/HSP12A regulates Purkinje cell survival: A role for endoplasmic reticulum stress in cerebellar development

被引:57
|
作者
Kitao, Y
Hashimoto, K
Matsuyama, T
Iso, H
Tamatani, T
Hori, O
Stern, DM
Kano, M
Ozawa, K
Ogawa, S
机构
[1] Kanazawa Univ, Grad Sch Med Sci, Dept Neuroanat, Kanazawa, Ishikawa 9208640, Japan
[2] Kanazawa Univ, Grad Sch Med Sci, Dept Cellular Neurophysiol, Kanazawa, Ishikawa 9208640, Japan
[3] Japan Sci & Technol, Core Res Evolut Sci & Technol, Kawaguchi 3320012, Japan
[4] Hyogo Med Univ, Dept Internal Med, Nishinomiya, Hyogo 6638501, Japan
[5] Hyogo Med Univ, Dept Behav Sci, Nishinomiya, Hyogo 6638501, Japan
[6] Med Coll Georgia, Deans Off, Augusta, GA 30912 USA
来源
JOURNAL OF NEUROSCIENCE | 2004年 / 24卷 / 06期
关键词
apoptosis; Ca; cerebellum; death; Purkinje cell; glutamate; neuronal cell death; calbindin; cerebellar ataxia;
D O I
10.1523/JNEUROSCI.4029-03.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The endoplasmic reticulum ( ER) stress response contributes to neuronal survival in ischemia and neurodegenerative processes. ORP150 (oxygen-regulated protein 150)/HSP12A ( heat shock protein 12A), a novel stress protein located in the ER, was markedly induced in Purkinje cells maximally at 4 - 8 d after birth, a developmental period corresponding to their vulnerability to cell death. Both terminal deoxynucleotidyl transferase-mediated biotinylated UTP nick end-labeling analysis and immunostaining using anti-activated caspase-3 antibody revealed that transgenic mice with targeted neuronal overexpression of ORP150 (Tg ORP150) displayed diminished cell death in the Purkinje cell layer and increased numbers of Purkinje cells up to 40 d after birth ( p < 0.01), compared with those observed in heterozygous ORP150/HSP12A-deficient (ORP150(+/-)) mice and wild-type littermates(ORP150(+/+)). Cultured Purkinje cells from Tg ORP150 mice displayed resistance to both hypoxia- and AMPA-induced stress. Behavioral analysis, using rotor rod tasks, indicated impairment of cerebellar function in Tg ORP150 animals, consistent with the concept that enhanced survival of Purkinje cells results in dysfunction. These data suggest that ER chaperones have a pivotal role in Purkinje cell survival and death and thus may highlight the importance of ER stress in neuronal development.
引用
收藏
页码:1486 / 1496
页数:11
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