Glucose deprivation reversibly down-regulates tissue plasminogen activator via proteasomal degradation in rat primary astrocytes

被引:5
作者
Cho, Kyu Suk [1 ,5 ]
Joo, So Hyun [5 ]
Choi, Chang Soon [1 ,5 ]
Kim, Ki Chan [1 ,5 ]
Ko, Hyun Myung [1 ,5 ]
Park, Jin Hee [1 ,5 ]
Kim, Pitna [1 ,5 ]
Hur, Jun [8 ]
Lee, Sung Hoon [1 ,5 ]
Bahn, Geon Ho [7 ]
Ryu, Jong Hoon [6 ]
Lee, Jongmin [4 ,5 ]
Han, Seol-Heui [2 ,5 ]
Kwon, Kyoung Ja [2 ,5 ]
Shin, Chan Young [1 ,3 ,5 ]
机构
[1] Konkuk Univ, Dept Neurosci, Sch Med, Seoul 143701, South Korea
[2] Konkuk Univ, Dept Neurol, Sch Med, Seoul 143701, South Korea
[3] Konkuk Univ, Dept Pharmacol, Sch Med, Seoul 143701, South Korea
[4] Konkuk Univ, Dept Rehabil Med, Sch Med, Seoul 143701, South Korea
[5] Konkuk Univ, SMART Inst Adv Biomed Sci, Seoul 143701, South Korea
[6] Kyung Hee Univ, Dept Oriental Pharmaceut Sci, Seoul, South Korea
[7] Kyung Hee Univ, Sch Med, Dept Neuropsychiat, Seoul, South Korea
[8] Bugil Acad, Global Leader Program, Cheonan, South Korea
基金
新加坡国家研究基金会;
关键词
Metabolic crisis; tPA; p38; PI3K; Translation; MG132; NEURONAL SURVIVAL; PROTEIN-KINASE; PATHWAY; TRANSLATION; GLYCOGEN; STRESS; POLYADENYLATION; AUTOPHAGY; INCREASE;
D O I
10.1016/j.lfs.2013.03.011
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Aims: Tissue plasminogen activator (tPA) is an essential neuromodulator whose involvement in multiple functions such as synaptic plasticity, cytokine-like immune function and regulation of cell survival mandates rapid and tight tPA regulation in the brain. We investigated the possibility that a transient metabolic challenge induced by glucose deprivation may affect tPA activity in rat primary astrocytes, the main cell type responsible for metabolic regulation in the CNS. Main methods: Rat primary astrocytes were incubated in serum-free DMEM without glucose. Casein zymography was used to determine tPA activity, and tPA mRNA was measured by RT-PCR. The signaling pathways regulating tPA activity were identified by Western blotting. Key findings: Glucose deprivation rapidly down-regulated the activity of tPA without affecting its mRNA level in rat primary astrocytes; this effect was mimicked by translational inhibitors. The down-regulation of tPA was accompanied by increased tPA degradation, which may be modulated by a proteasome-dependent degradation pathway. Glucose deprivation induced activation of PI3K-Akt-GSK3 beta, p38 and AMPK, and inhibition of these pathways using LY294002, SB203580 and compound C significantly inhibited glucose deprivation-induced tPA down-regulation, demonstrating the essential role of these pathways in tPA regulation in glucose-deprived astrocytes. Significance: Rapid and reversible regulation of tPA activity in rat primary astrocytes during metabolic crisis may minimize energy-requiring neurologic processes in stressed situations. This effect may thereby increase the opportunity to invest cellular resources in cell survival and may allow rapid re-establishment of normal cellular function after the crisis. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:929 / 937
页数:9
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