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小窝蛋白-1的表达对于N-甲基-D-天冬氨酸受体介导的Src和细胞外信号调节激酶1/2的激活以及保护原代神经元免受缺血性细胞死亡至关重要。

Caveolin-1 expression is essential for N-methyl-D-aspartate receptor-mediated Src and extracellular signal-regulated kinase 1/2 activation and protection of primary neurons from ischemic cell death.

作者信息

Head Brian P, Patel Hemal H, Tsutsumi Yasuo M, Hu Yue, Mejia Trisha, Mora Rosalia C, Insel Paul A, Roth David M, Drummond John C, Patel Piyush M

机构信息

Department of Anesthesiology, University of California, San Diego, La Jolla, California, USA.

出版信息

FASEB J. 2008 Mar;22(3):828-40. doi: 10.1096/fj.07-9299com. Epub 2007 Sep 28.

Abstract

N-Methyl-D-aspartate (NMDA) receptor (NMDAR) activation and downstream signaling are important for neuronal function. Activation of prosurvival Src family kinases and extracellular signal-regulated kinase (ERK) 1/2 is initiated by NMDAR activation, but the cellular organization of these kinases in relation to NMDARs is not entirely clear. We hypothesized that caveolin-1 scaffolds and coordinates protein complexes involved in NMDAR signaling and that this organization is necessary for neuronal preconditioning, whereby NMDAR activation protects neurons from subsequent ischemic cell death. We found that sublethal ischemia (SLI) or preconditioning via NMDA treatment of primary cortical neurons from neonatal rats or mice increases expression of phosphorylated (P) caveolin-1, P-Src, and P-ERK1/2. The NMDAR antagonist, MK801, or the Src inhibitor, PP2, attenuated SLI-induced preconditioning. NMDAR2B distributed to buoyant fractions and heavy fractions, partially colocalized with caveolin-1 and the membrane raft marker, cholera toxin B. Cultures of primary neurons treated with caveolin-1 small interfering RNA or from caveolin-1(-/-) mice lacked the NMDA-mediated increase in P-Src and P-ERK, as well as SLI- and NMDA-induced preconditioning. Adenovirally mediated expression of caveolin-1 in neurons from caveolin-1(-/-) mice restored NMDA-mediated enhancement of P-Src and P-ERK1/2, redistributed NMDAR2B to buoyant fractions, and enhanced NMDAR2B localization to membrane rafts. We conclude that caveolin-1, perhaps via its ability to scaffold key signaling components, is essential for NMDAR localization to neuronal membrane rafts, NMDAR/Src tyrosine kinase family/ERK signaling, and protection of neurons from ischemic injury and cell death.

摘要

N-甲基-D-天冬氨酸(NMDA)受体(NMDAR)的激活及其下游信号传导对神经元功能至关重要。促生存的Src家族激酶和细胞外信号调节激酶(ERK)1/2的激活由NMDAR激活引发,但这些激酶相对于NMDAR的细胞组织尚不完全清楚。我们推测,小窝蛋白-1构建并协调参与NMDAR信号传导的蛋白复合物,并且这种组织对于神经元预处理是必需的,通过这种方式,NMDAR激活可保护神经元免受随后的缺血性细胞死亡。我们发现,亚致死性缺血(SLI)或通过对新生大鼠或小鼠的原代皮质神经元进行NMDA处理来进行预处理,可增加磷酸化(P)小窝蛋白-1、P-Src和P-ERK1/2的表达。NMDAR拮抗剂MK801或Src抑制剂PP2可减弱SLI诱导的预处理。NMDAR2B分布于轻组分和重组分中,与小窝蛋白-1和膜筏标记物霍乱毒素B部分共定位。用小窝蛋白-1小干扰RNA处理的原代神经元培养物或来自小窝蛋白-1基因敲除(-/-)小鼠的培养物缺乏NMDA介导的P-Src和P-ERK增加,以及SLI和NMDA诱导的预处理。腺病毒介导的小窝蛋白-1在小窝蛋白-1基因敲除(-/-)小鼠神经元中的表达恢复了NMDA介导的P-Src和P-ERK1/2增强,将NMDAR2B重新分布到轻组分中,并增强了NMDAR2B在膜筏中的定位。我们得出结论,小窝蛋白-1可能通过其构建关键信号成分的能力,对于NMDAR定位于神经元膜筏、NMDAR/Src酪氨酸激酶家族/ERK信号传导以及保护神经元免受缺血性损伤和细胞死亡至关重要。

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