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本文引用的文献

1
Genetic and physiological evidence that oligodendrocyte gap junctions contribute to spatial buffering of potassium released during neuronal activity.遗传和生理学证据表明,少突胶质细胞间隙连接有助于对神经元活动期间释放的钾进行空间缓冲。
J Neurosci. 2006 Oct 25;26(43):10984-91. doi: 10.1523/JNEUROSCI.0304-06.2006.
2
Mutations in the CLCN2 gene are a rare cause of idiopathic generalized epilepsy syndromes.CLCN2基因的突变是特发性全身性癫痫综合征的一种罕见病因。
Neurogenetics. 2006 Nov;7(4):265-8. doi: 10.1007/s10048-006-0057-x. Epub 2006 Aug 24.
3
Inwardly rectifying potassium channels (Kir) in central nervous system glia: a special role for Kir4.1 in glial functions.中枢神经系统胶质细胞中的内向整流钾通道(Kir):Kir4.1在胶质细胞功能中的特殊作用。
J Cell Mol Med. 2006 Jan-Mar;10(1):33-44. doi: 10.1111/j.1582-4934.2006.tb00289.x.
4
Mice with altered KCNQ4 K+ channels implicate sensory outer hair cells in human progressive deafness.KCNQ4钾离子通道发生改变的小鼠表明,感觉性外毛细胞与人类进行性耳聋有关。
EMBO J. 2006 Feb 8;25(3):642-52. doi: 10.1038/sj.emboj.7600951. Epub 2006 Jan 26.
5
Mice with a targeted disruption of the Cl-/HCO3- exchanger AE3 display a reduced seizure threshold.氯离子/碳酸氢根离子交换体AE3发生靶向破坏的小鼠癫痫发作阈值降低。
Mol Cell Biol. 2006 Jan;26(1):182-91. doi: 10.1128/MCB.26.1.182-191.2006.
6
Lack of the Kir4.1 channel subunit abolishes K+ buffering properties of astrocytes in the ventral respiratory group: impact on extracellular K+ regulation.Kir4.1通道亚基的缺失消除了腹侧呼吸组星形胶质细胞的钾离子缓冲特性:对细胞外钾离子调节的影响。
J Neurophysiol. 2006 Mar;95(3):1843-52. doi: 10.1152/jn.00996.2005. Epub 2005 Nov 23.
7
Fluoro-Jade C results in ultra high resolution and contrast labeling of degenerating neurons.荧光玉髓C可对退化神经元进行超高分辨率和对比度标记。
Brain Res. 2005 Feb 21;1035(1):24-31. doi: 10.1016/j.brainres.2004.11.054.
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Mutations and polymorphisms of the CLCN2 gene in idiopathic epilepsy.特发性癫痫中CLCN2基因的突变与多态性
Neurology. 2004 Oct 26;63(8):1500-2. doi: 10.1212/01.wnl.0000142093.94998.1a.
9
Unique distributions of the gap junction proteins connexin29, connexin32, and connexin47 in oligodendrocytes.缝隙连接蛋白连接蛋白29、连接蛋白32和连接蛋白47在少突胶质细胞中的独特分布。
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10
Functional evaluation of human ClC-2 chloride channel mutations associated with idiopathic generalized epilepsies.与特发性全身性癫痫相关的人类氯离子通道蛋白2(ClC-2)突变的功能评估
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氯离子通道ClC-2破坏后的白质脑病

Leukoencephalopathy upon disruption of the chloride channel ClC-2.

作者信息

Blanz Judith, Schweizer Michaela, Auberson Muriel, Maier Hannes, Muenscher Adrian, Hübner Christian A, Jentsch Thomas J

机构信息

Zentrum für Molekulare Neurobiologie Hamburg, Universität Hamburg, D-20252 Hamburg, Germany.

出版信息

J Neurosci. 2007 Jun 13;27(24):6581-9. doi: 10.1523/JNEUROSCI.0338-07.2007.

DOI:10.1523/JNEUROSCI.0338-07.2007
PMID:17567819
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6672451/
Abstract

ClC-2 is a broadly expressed plasma membrane chloride channel that is modulated by voltage, cell swelling, and pH. A human mutation leading to a heterozygous loss of ClC-2 has previously been reported to be associated with epilepsy, whereas the disruption of Clcn2 in mice led to testicular and retinal degeneration. We now show that the white matter of the brain and spinal cord of ClC-2 knock-out mice developed widespread vacuolation that progressed with age. Fluid-filled spaces appeared between myelin sheaths of the central but not the peripheral nervous system. Neuronal morphology, in contrast, seemed normal. Except for the previously reported blindness, neurological deficits were mild and included a decreased conduction velocity in neurons of the central auditory pathway. The heterozygous loss of ClC-2 had no detectable functional or morphological consequences. Neither heterozygous nor homozygous ClC-2 knock-out mice had lowered seizure thresholds. Sequencing of a large collection of human DNA and electrophysiological analysis showed that several ClC-2 sequence abnormalities previously found in patients with epilepsy most likely represent innocuous polymorphisms.

摘要

ClC-2是一种广泛表达的质膜氯离子通道,受电压、细胞肿胀和pH值调节。先前有报道称,导致ClC-2杂合性缺失的一种人类突变与癫痫有关,而小鼠中Clcn2的缺失则导致睾丸和视网膜退化。我们现在发现,ClC-2基因敲除小鼠的脑和脊髓白质出现广泛的空泡化,并随年龄增长而进展。中央神经系统而非外周神经系统的髓鞘之间出现充满液体的间隙。相比之下,神经元形态似乎正常。除了先前报道的失明外,神经功能缺损较轻,包括中央听觉通路神经元的传导速度降低。ClC-2的杂合性缺失没有可检测到的功能或形态学后果。杂合子和纯合子ClC-2基因敲除小鼠的癫痫阈值均未降低。对大量人类DNA的测序和电生理分析表明,先前在癫痫患者中发现的几种ClC-2序列异常很可能代表无害的多态性。