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本文引用的文献

1
Calcium-permeable AMPA receptors are expressed in a rodent model of status epilepticus.在癫痫持续状态的啮齿动物模型中表达钙通透性 AMPA 受体。
Ann Neurol. 2012 Jul;72(1):91-102. doi: 10.1002/ana.23570.
2
The interaction between early life epilepsy and autistic-like behavioral consequences: a role for the mammalian target of rapamycin (mTOR) pathway.早期癫痫与类似自闭症行为后果之间的相互作用:哺乳动物雷帕霉素靶蛋白(mTOR)途径的作用。
PLoS One. 2012;7(5):e35885. doi: 10.1371/journal.pone.0035885. Epub 2012 May 2.
3
Hypoxia-induced neonatal seizures diminish silent synapses and long-term potentiation in hippocampal CA1 neurons.缺氧诱导的新生儿癫痫会减少海马 CA1 神经元中的沉默突触和长时程增强。
J Neurosci. 2011 Dec 14;31(50):18211-22. doi: 10.1523/JNEUROSCI.4838-11.2011.
4
Phosphorylation of AMPA receptors is required for sensory deprivation-induced homeostatic synaptic plasticity.AMPA 受体的磷酸化是感觉剥夺诱导的同型突触可塑性所必需的。
PLoS One. 2011 Mar 31;6(3):e18264. doi: 10.1371/journal.pone.0018264.
5
Development of later life spontaneous seizures in a rodent model of hypoxia-induced neonatal seizures.缺氧诱导的新生儿癫痫发作的啮齿动物模型中晚年自发性癫痫发作的发展。
Epilepsia. 2011 Apr;52(4):753-65. doi: 10.1111/j.1528-1167.2011.02992.x. Epub 2011 Mar 2.
6
Epilepsy as a spectrum disorder: Implications from novel clinical and basic neuroscience.癫痫作为一种谱系障碍:来自新的临床和基础神经科学的启示。
Epilepsia. 2011 Jan;52 Suppl 1:1-6. doi: 10.1111/j.1528-1167.2010.02904.x.
7
A three-step model for the synaptic recruitment of AMPA receptors.三步骤模型用于 AMAP 受体的突触募集。
Mol Cell Neurosci. 2011 Jan;46(1):1-8. doi: 10.1016/j.mcn.2010.08.014. Epub 2010 Sep 9.
8
Stabilization of Ca2+-permeable AMPA receptors at perisynaptic sites by GluR1-S845 phosphorylation.通过 GluR1-S845 磷酸化稳定突触旁部位的 Ca2+通透性 AMPA 受体。
Proc Natl Acad Sci U S A. 2009 Nov 24;106(47):20033-8. doi: 10.1073/pnas.0910338106. Epub 2009 Nov 5.
9
Endocytic trafficking and recycling maintain a pool of mobile surface AMPA receptors required for synaptic potentiation.内吞运输和再循环维持着突触增强所需的可移动表面AMPA受体池。
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10
Epileptogenesis in the immature brain: emerging mechanisms.未成熟脑的癫痫发生:新兴机制。
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谷氨酸受体 1 丝氨酸 831 和 845 的磷酸化调节早期癫痫发作后癫痫易感性和海马过度兴奋。

Glutamate receptor 1 phosphorylation at serine 831 and 845 modulates seizure susceptibility and hippocampal hyperexcitability after early life seizures.

机构信息

Department of Neurology, Children's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Neurosci. 2012 Dec 5;32(49):17800-12. doi: 10.1523/JNEUROSCI.6121-11.2012.

DOI:10.1523/JNEUROSCI.6121-11.2012
PMID:23223299
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3574823/
Abstract

Neonatal seizures can lead to later life epilepsy and neurobehavioral deficits, and there are no treatments to prevent these sequelae. We showed previously that hypoxia-induced seizures in a neonatal rat model induce rapid phosphorylation of serine-831 (S831) and Serine 845 (S845) sites of the AMPA receptor GluR1 subunit and later neuronal hyperexcitability and epilepsy, suggesting that seizure-induced posttranslational modifications may represent a novel therapeutic target. To unambiguously assess the contribution of these sites, we examined seizure susceptibility in wild-type mice versus transgenic knock-in mice with deficits in GluR1 S831 and S845 phosphorylation [GluR1 double-phosphomutant (GluR1 DPM) mice]. Phosphorylation of the GluR1 S831 and S845 sites was significantly increased in the hippocampus and cortex after a single episode of pentyleneterazol-induced seizures in postnatal day 7 (P7) wild-type mouse pups and that transgenic knock-in mice have a higher threshold and longer latencies to seizures. Like the rat, hypoxic seizures in P9 C57BL/6N wild-type mice resulted in transient increases in GluR1 S831 and GluR1 S845 phosphorylation in cortex and were associated with enhanced seizure susceptibility to later-life kainic-acid-induced seizures. In contrast, later-life seizure susceptibility after hypoxia-induced seizures was attenuated in GluR1 DPM mice, supporting a role for posttranslational modifications in seizure-induced network excitability. Finally, human hippocampal samples from neonatal seizure autopsy cases also showed an increase in GluR1 S831 and S845, supporting the validation of this potential therapeutic target in human tissue.

摘要

新生儿癫痫发作可导致日后发生癫痫和神经行为缺陷,目前尚无预防这些后遗症的治疗方法。我们之前的研究表明,新生大鼠模型中的缺氧诱导性癫痫发作会迅速导致 AMPA 受体 GluR1 亚基丝氨酸-831(S831)和丝氨酸 845(S845)位点磷酸化,随后导致神经元过度兴奋和癫痫发作,这表明癫痫发作引起的翻译后修饰可能代表一个新的治疗靶点。为了明确评估这些位点的作用,我们在野生型小鼠和 GluR1 S831 和 S845 磷酸化缺陷的转基因敲入小鼠(GluR1 双磷酸化突变体(GluR1 DPM)小鼠)中检查了癫痫易感性。在新生 7 天(P7)野生型小鼠幼仔单次戊四氮诱导癫痫发作后,海马体和皮质中 GluR1 S831 和 S845 位点的磷酸化显著增加,且转基因敲入小鼠的癫痫发作阈值更高,潜伏期更长。与大鼠相似,P9 C57BL/6N 野生型小鼠的缺氧性癫痫发作导致皮质中 GluR1 S831 和 GluR1 S845 磷酸化短暂增加,并与日后生活中因海人酸诱导的癫痫发作而易感性增强相关。相比之下,GluR1 DPM 小鼠中的缺氧诱导性癫痫发作后,后期癫痫易感性降低,支持翻译后修饰在癫痫发作诱导的网络兴奋中的作用。最后,来自新生儿癫痫尸检病例的人类海马体样本也显示 GluR1 S831 和 S845 增加,支持在人类组织中验证该潜在治疗靶点。