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1
Pannexin 1 channels and ATP release in epilepsy: two sides of the same coin : The contribution of pannexin-1, connexins, and CALHM ATP-release channels to purinergic signaling.缝隙连接蛋白 1 通道和癫痫中的 ATP 释放:同一枚硬币的两面:缝隙连接蛋白 1、连接蛋白和 CALHM ATP 释放通道对嘌呤能信号转导的贡献。
Purinergic Signal. 2021 Dec;17(4):533-548. doi: 10.1007/s11302-021-09818-2. Epub 2021 Sep 8.
2
Pannexin-1 channels contribute to seizure generation in human epileptic brain tissue and in a mouse model of epilepsy.缝隙连接蛋白 1 通道有助于癫痫病人脑组织和癫痫小鼠模型中的癫痫发作。
Sci Transl Med. 2018 May 30;10(443). doi: 10.1126/scitranslmed.aar3796.
3
Mechanisms of ATP release in pain: role of pannexin and connexin channels.疼痛中 ATP 释放的机制:pannexin 和 connexin 通道的作用。
Purinergic Signal. 2021 Dec;17(4):549-561. doi: 10.1007/s11302-021-09822-6. Epub 2021 Nov 18.
4
An introduction to the special issue "The contribution of pannexin-1, connexins and CALHM ATP-release channels to purinergic signalling".特刊“泛连接蛋白-1、连接蛋白和CALHM ATP释放通道对嘌呤能信号传导的贡献”引言
Purinergic Signal. 2021 Dec;17(4):519. doi: 10.1007/s11302-021-09825-3.
5
Pannexin-1 channels in epilepsy.癫痫中的泛连接蛋白-1通道
Neurosci Lett. 2019 Mar 16;695:71-75. doi: 10.1016/j.neulet.2017.09.004. Epub 2017 Sep 5.
6
Mechanosensitive release of adenosine 5'-triphosphate through pannexin channels and mechanosensitive upregulation of pannexin channels in optic nerve head astrocytes: a mechanism for purinergic involvement in chronic strain.通过连接蛋白通道的机械敏感性释放三磷酸腺苷和视神经头部星形胶质细胞中连接蛋白通道的机械敏感性上调:嘌呤能参与慢性张力的一种机制。
Glia. 2014 Sep;62(9):1486-501. doi: 10.1002/glia.22695. Epub 2014 May 19.
7
Interdependence of ATP signalling and pannexin channels; the servant was really the master all along?ATP信号传导与泛连接蛋白通道的相互依存关系;究竟一直以来是仆人实则为主人?
Biochem J. 2015 Dec 15;472(3):e27-30. doi: 10.1042/BJ20151016.
8
Differentiating connexin hemichannels and pannexin channels in cellular ATP release.在细胞 ATP 释放中区分连接蛋白半通道和 Pannexin 通道。
FEBS Lett. 2014 Apr 17;588(8):1379-88. doi: 10.1016/j.febslet.2014.02.004. Epub 2014 Feb 15.
9
The role of Pannexin-1 channels and extracellular ATP in the pathogenesis of the human immunodeficiency virus.Pannexin-1 通道和细胞外 ATP 在人类免疫缺陷病毒发病机制中的作用。
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Metabolic autocrine regulation of neurons involves cooperation among pannexin hemichannels, adenosine receptors, and KATP channels.神经元的代谢自分泌调节涉及连接蛋白半通道、腺苷受体和 KATP 通道之间的合作。
J Neurosci. 2010 Mar 17;30(11):3886-95. doi: 10.1523/JNEUROSCI.0055-10.2010.

引用本文的文献

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Pericyte pannexin1 controls cerebral capillary diameter and supports memory function.周细胞的泛连接蛋白1控制脑毛细血管直径并支持记忆功能。
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Rab11a-dependent recycling of Glut3 inhibits seizure-induced neuronal disulfidptosis by alleviating glucose deficiency.Rab11a 依赖的 Glut3 再循环通过减轻葡萄糖缺乏来抑制癫痫发作诱导的神经元二硫键介导的细胞死亡。
Cell Biosci. 2025 May 28;15(1):69. doi: 10.1186/s13578-025-01396-9.
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Research progress of connexins in epileptogensis.连接蛋白在癫痫发生中的研究进展
Acta Epileptol. 2025 Mar 15;7(1):14. doi: 10.1186/s42494-025-00203-9.
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Probenecid as a pharmacotherapy for alcohol use disorder: A randomized placebo-controlled alcohol interaction trial.丙磺舒作为酒精使用障碍的药物治疗:一项随机安慰剂对照酒精相互作用试验。
Alcohol Clin Exp Res (Hoboken). 2024 Dec;48(12):2391-2403. doi: 10.1111/acer.15470. Epub 2024 Oct 29.
5
Regulation of GABAergic neurotransmission by purinergic receptors in brain physiology and disease.嘌呤能受体对脑生理和疾病中γ-氨基丁酸能神经传递的调节
Purinergic Signal. 2025 Feb;21(1):149-177. doi: 10.1007/s11302-024-10034-x. Epub 2024 Jul 24.
6
Extracellular ATP/adenosine dynamics in the brain and its role in health and disease.大脑中的细胞外ATP/腺苷动态变化及其在健康和疾病中的作用。
Front Cell Dev Biol. 2024 Jan 18;11:1343653. doi: 10.3389/fcell.2023.1343653. eCollection 2023.
7
Connexins Control Glial Inflammation in Various Neurological Diseases.连接蛋白在多种神经疾病中控制神经胶质炎症。
Int J Mol Sci. 2023 Nov 28;24(23):16879. doi: 10.3390/ijms242316879.

本文引用的文献

1
The Contribution of Astrocyte and Neuronal Panx1 to Seizures Is Model and Brain Region Dependent.星形胶质细胞和神经元 Panx1 对癫痫发作的贡献具有模型和脑区依赖性。
ASN Neuro. 2021 Jan-Dec;13:17590914211007273. doi: 10.1177/17590914211007273.
2
Leucine-Enriched Essential Amino Acids Enhance the Antiseizure Effects of the Ketogenic Diet in Rats.富含亮氨酸的必需氨基酸增强生酮饮食对大鼠的抗癫痫作用。
Front Neurosci. 2021 Mar 19;15:637288. doi: 10.3389/fnins.2021.637288. eCollection 2021.
3
Purinergic signaling in nervous system health and disease: Focus on pannexin 1.嘌呤能信号在神经系统健康和疾病中的作用:关注连接蛋白 1。
Pharmacol Ther. 2021 Sep;225:107840. doi: 10.1016/j.pharmthera.2021.107840. Epub 2021 Mar 19.
4
ATP and large signaling metabolites flux through caspase-activated Pannexin 1 channels.三磷酸腺苷和大的信号代谢物通过半胱天冬酶激活的连接蛋白 1 通道流动。
Elife. 2021 Jan 7;10:e64787. doi: 10.7554/eLife.64787.
5
Pannexin-1 Deficiency Decreases Epileptic Activity in Mice.缝隙连接蛋白 1 缺乏可减少小鼠的癫痫发作活动。
Int J Mol Sci. 2020 Oct 12;21(20):7510. doi: 10.3390/ijms21207510.
6
Structures of human pannexin 1 reveal ion pathways and mechanism of gating.人源 Pannexin 1 结构揭示了其离子通道及门控机制。
Nature. 2020 Aug;584(7822):646-651. doi: 10.1038/s41586-020-2357-y. Epub 2020 Jun 3.
7
Structural basis for gating mechanism of Pannexin 1 channel.泛连接蛋白1通道门控机制的结构基础。
Cell Res. 2020 May;30(5):452-454. doi: 10.1038/s41422-020-0313-x. Epub 2020 Apr 13.
8
Acute Pannexin 1 Blockade Mitigates Early Synaptic Plasticity Defects in a Mouse Model of Alzheimer's Disease.急性阻断泛连接蛋白1可减轻阿尔茨海默病小鼠模型中的早期突触可塑性缺陷。
Front Cell Neurosci. 2020 Mar 19;14:46. doi: 10.3389/fncel.2020.00046. eCollection 2020.
9
Metabolites released from apoptotic cells act as tissue messengers.凋亡细胞释放的代谢物作为组织信使发挥作用。
Nature. 2020 Apr;580(7801):130-135. doi: 10.1038/s41586-020-2121-3. Epub 2020 Mar 18.
10
Cryo-EM structures of the ATP release channel pannexin 1.潘尼西林 1 型三磷酸腺核苷释放通道的冷冻电镜结构。
Nat Struct Mol Biol. 2020 Apr;27(4):373-381. doi: 10.1038/s41594-020-0401-0. Epub 2020 Mar 30.

缝隙连接蛋白 1 通道和癫痫中的 ATP 释放:同一枚硬币的两面:缝隙连接蛋白 1、连接蛋白和 CALHM ATP 释放通道对嘌呤能信号转导的贡献。

Pannexin 1 channels and ATP release in epilepsy: two sides of the same coin : The contribution of pannexin-1, connexins, and CALHM ATP-release channels to purinergic signaling.

机构信息

Neuroglial Interactions in Cerebral Physiology and Pathologies, Center for Interdisciplinary Research in Biology, Centre National de la Recherche Scientifique UMR 7241, Institut National de la Santé Et de la Recherche Médicale U1050, Collège de France, Labex Memolife, Université PSL, Paris, France.

出版信息

Purinergic Signal. 2021 Dec;17(4):533-548. doi: 10.1007/s11302-021-09818-2. Epub 2021 Sep 8.

DOI:10.1007/s11302-021-09818-2
PMID:34495463
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8677866/
Abstract

Purinergic signaling mediated by ATP and its metabolites contributes to various brain physiological processes as well as to several pathological conditions, including neurodegenerative and neurological disorders, such as epilepsy. Among the different ATP release pathways, pannexin 1 channels represent one of the major conduits being primarily activated in pathological contexts. Investigations on in vitro and in vivo models of epileptiform activity and seizures in mice and human tissues revealed pannexin 1 involvement in aberrant network activity and epilepsy, and highlighted that pannexin 1 exerts a complex role. Pannexin 1 can indeed either sustain seizures through release of ATP that can directly activate purinergic receptors, or tune down epileptic activity via ATP-derived adenosine that decreases neuronal excitability. Interestingly, in-depth analysis of the literature unveils that this dichotomy is only apparent, as it depends on the model of seizure induction and the type of evoked epileptiform activity, two factors that can differentially activate pannexin 1 channels and trigger distinct intracellular signaling cascades. Here, we review the general properties and ATP permeability of pannexin 1 channels, and discuss their impact on acute epileptiform activity and chronic epilepsy according to the regime of activity and disease state. These data pave the way for the development of new antiepileptic strategies selectively targeting pannexin 1 channels in a context-dependent manner.

摘要

嘌呤能信号转导由 ATP 及其代谢物介导,参与多种大脑生理过程以及多种病理状况,包括神经退行性和神经紊乱,如癫痫。在不同的 ATP 释放途径中,pannexin 1 通道是主要在病理情况下被激活的主要途径之一。在体外和体内癫痫样活动和癫痫发作的模型研究中,研究人员揭示了 pannexin 1 参与异常网络活动和癫痫,强调了 pannexin 1 发挥的复杂作用。pannexin 1 确实可以通过释放 ATP 来维持癫痫发作,ATP 可以直接激活嘌呤能受体,或者通过减少神经元兴奋性的 ATP 衍生腺苷来调节癫痫活动。有趣的是,对文献的深入分析表明,这种二分法只是表面上的,因为它取决于癫痫诱导模型和诱发癫痫样活动的类型,这两个因素可以不同地激活 pannexin 1 通道,并触发不同的细胞内信号级联。在这里,我们回顾了 pannexin 1 通道的一般特性和 ATP 通透性,并根据活动和疾病状态讨论了它们对急性癫痫样活动和慢性癫痫的影响。这些数据为开发新的抗癫痫策略铺平了道路,这些策略可以根据上下文有选择性地靶向 pannexin 1 通道。