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钠钙交换体逆转后钙动力学的变化在海马神经元中通过钙蛋白酶激活介导α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体介导的神经变性中起关键作用。

Changes in calcium dynamics following the reversal of the sodium-calcium exchanger have a key role in AMPA receptor-mediated neurodegeneration via calpain activation in hippocampal neurons.

作者信息

Araújo I M, Carreira B P, Pereira T, Santos P F, Soulet D, Inácio A, Bahr B A, Carvalho A P, Ambrósio A F, Carvalho C M

机构信息

Center for Neuroscience and Cell Biology, Department of Zoology, University of Coimbra, Coimbra, Portugal.

出版信息

Cell Death Differ. 2007 Sep;14(9):1635-46. doi: 10.1038/sj.cdd.4402171. Epub 2007 Jun 22.

Abstract

Proteolytic cleavage of the Na(+)/Ca(2+) exchanger (NCX) by calpains impairs calcium homeostasis, leading to a delayed calcium overload and excitotoxic cell death. However, it is not known whether reversal of the exchanger contributes to activate calpains and trigger neuronal death. We investigated the role of the reversal of the NCX in Ca(2+) dynamics, calpain activation and cell viability, in alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate (AMPA) receptor-stimulated hippocampal neurons. Selective overactivation of AMPA receptors caused the reversal of the NCX, which accounted for approximately 30% of the rise in intracellular free calcium concentration (Ca(2+)). The NCX reverse-mode inhibitor, 2-[2-[4-(4-nitrobenzyloxy)phenyl]ethyl]isothiourea (KB-R7943), partially inhibited the initial increase in Ca(2+), and prevented a delayed increase in Ca(2+). In parallel, overactivation of AMPA receptors strongly activated calpains and led to the proteolysis of NCX3. KB-R7943 prevented calpain activation, cleavage of NCX3 and was neuroprotective. Silencing of NCX3 reduced Ca(2+) uptake, calpain activation and was neuroprotective. Our data show for the first time that NCX reversal is an early event following AMPA receptor stimulation and is linked to the activation of calpains. Since calpain activation subsequently inactivates NCX, causing a secondary Ca(2+) entry, NCX may be viewed as a new suicide substrate operating in a Ca(2+)-dependent loop that triggers cell death and as a target for neuroprotection.

摘要

钙蛋白酶对钠/钙交换体(NCX)的蛋白水解切割会损害钙稳态,导致延迟性钙超载和兴奋性毒性细胞死亡。然而,尚不清楚交换体的反向转运是否会促使钙蛋白酶激活并引发神经元死亡。我们研究了在α-氨基-3-羟基-5-甲基异恶唑-4-丙酸(AMPA)受体刺激的海马神经元中,NCX反向转运在钙动力学、钙蛋白酶激活和细胞活力方面的作用。AMPA受体的选择性过度激活导致了NCX的反向转运,这约占细胞内游离钙浓度([Ca²⁺]i)升高的30%。NCX反向转运模式抑制剂2-[2-[4-(4-硝基苄氧基)phenyl]乙基]异硫脲(KB-R7943)部分抑制了[Ca²⁺]i的初始升高,并防止了[Ca²⁺]i的延迟升高。同时,AMPA受体的过度激活强烈激活了钙蛋白酶,并导致NCX3的蛋白水解。KB-R7943可防止钙蛋白酶激活、NCX3的切割,并具有神经保护作用。沉默NCX3可减少钙摄取、钙蛋白酶激活,并具有神经保护作用。我们的数据首次表明,NCX反向转运是AMPA受体刺激后的早期事件,并与钙蛋白酶的激活有关。由于钙蛋白酶激活随后会使NCX失活,导致继发性钙内流,因此NCX可被视为在触发细胞死亡的钙依赖性循环中起作用的新自杀底物,以及神经保护的靶点。

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