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Br J Pharmacol. 2002 Dec;137(8):1173-86. doi: 10.1038/sj.bjp.0704989.
2
Stoichiometry of expressed KCNQ2/KCNQ3 potassium channels and subunit composition of native ganglionic M channels deduced from block by tetraethylammonium.由四乙铵阻断推导表达的KCNQ2/KCNQ3钾通道的化学计量和天然神经节M通道的亚基组成。
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3
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Reconstitution of muscarinic modulation of the KCNQ2/KCNQ3 K(+) channels that underlie the neuronal M current.构成神经元M电流基础的KCNQ2/KCNQ3钾通道的毒蕈碱调节的重构。
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Dominant-negative subunits reveal potassium channel families that contribute to M-like potassium currents.显性负性亚基揭示了对M样钾电流有贡献的钾通道家族。
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本文引用的文献

1
M channel KCNQ2 subunits are localized to key sites for control of neuronal network oscillations and synchronization in mouse brain.M通道KCNQ2亚基定位于小鼠大脑中控制神经网络振荡和同步的关键部位。
J Neurosci. 2001 Dec 15;21(24):9529-40. doi: 10.1523/JNEUROSCI.21-24-09529.2001.
2
Ion channels and epilepsy.离子通道与癫痫
Am J Med Genet. 2001 Summer;106(2):146-59. doi: 10.1002/ajmg.1582.
3
Activation of expressed KCNQ potassium currents and native neuronal M-type potassium currents by the anti-convulsant drug retigabine.抗惊厥药物瑞替加滨对表达的KCNQ钾电流和天然神经元M型钾电流的激活作用。
J Neurosci. 2001 Aug 1;21(15):5535-45. doi: 10.1523/JNEUROSCI.21-15-05535.2001.
4
Properties of single M-type KCNQ2/KCNQ3 potassium channels expressed in mammalian cells.在哺乳动物细胞中表达的单个M型KCNQ2/KCNQ3钾通道的特性。
J Physiol. 2001 Jul 1;534(Pt 1):15-24. doi: 10.1111/j.1469-7793.2001.00015.x.
5
Neuronal KCNQ potassium channels: physiology and role in disease.神经元KCNQ钾通道:生理学及在疾病中的作用
Nat Rev Neurosci. 2000 Oct;1(1):21-30. doi: 10.1038/35036198.
6
Retigabine, a novel anti-convulsant, enhances activation of KCNQ2/Q3 potassium channels.瑞替加滨,一种新型抗惊厥药,可增强KCNQ2/Q3钾通道的激活。
Mol Pharmacol. 2000 Sep;58(3):591-600. doi: 10.1124/mol.58.3.591.
7
Modulation of KCNQ2/3 potassium channels by the novel anticonvulsant retigabine.新型抗惊厥药瑞替加滨对KCNQ2/3钾通道的调节作用
Mol Pharmacol. 2000 Aug;58(2):253-62. doi: 10.1124/mol.58.2.253.
8
KCNQ5, a novel potassium channel broadly expressed in brain, mediates M-type currents.KCNQ5是一种在大脑中广泛表达的新型钾通道,介导M型电流。
J Biol Chem. 2000 Aug 4;275(31):24089-95. doi: 10.1074/jbc.M003245200.
9
Molecular cloning and functional expression of KCNQ5, a potassium channel subunit that may contribute to neuronal M-current diversity.钾通道亚基KCNQ5的分子克隆与功能表达,该亚基可能与神经元M电流多样性有关。
J Biol Chem. 2000 Jul 21;275(29):22395-400. doi: 10.1074/jbc.M002378200.
10
Inhibition of KCNQ1-4 potassium channels expressed in mammalian cells via M1 muscarinic acetylcholine receptors.通过M1毒蕈碱型乙酰胆碱受体抑制哺乳动物细胞中表达的KCNQ1 - 4钾通道。
J Physiol. 2000 Feb 1;522 Pt 3(Pt 3):349-55. doi: 10.1111/j.1469-7793.2000.t01-2-00349.x.

抗体和一种半胱氨酸修饰试剂表明神经元中的M电流与KCNQ2和KCNQ3钾离子通道存在对应关系。

Antibodies and a cysteine-modifying reagent show correspondence of M current in neurons to KCNQ2 and KCNQ3 K+ channels.

作者信息

Roche John P, Westenbroek Ruth, Sorom Abraham J, Hille Bertil, Mackie Ken, Shapiro Mark S

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Box 356540, Seattle, WA 98195-6540, U.S.A.

出版信息

Br J Pharmacol. 2002 Dec;137(8):1173-86. doi: 10.1038/sj.bjp.0704989.

DOI:10.1038/sj.bjp.0704989
PMID:12466226
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1573614/
Abstract
  1. KCNQ K(+) channels are thought to underlie the M current of neurons. To probe if the KCNQ2 and KCNQ3 subtypes underlie the M current of rat superior cervical ganglia (SCG) neurons and of hippocampus, we raised specific antibodies against them and also used the cysteine-alkylating agent N-ethylmaleimide (NEM) as an additional probe of subunit composition. 2. Tested on tsA-201 (tsA) cells transfected with cloned KCNQ1-5 subunits, our antibodies showed high affinity and selectivity for the appropriate subtype. The antibodies immunostained SCG neurons and hippocampal sections at levels similar to those for channels expressed in tsA cells, indicating that KCNQ2 and KCNQ3 are present in SCG and hippocampal neurons. Some hippocampal regions contained only KCNQ2 or KCNQ3 subunits, suggesting the presence of M currents produced by channels other than KCNQ2/3 heteromultimers. 3. We found that NEM augmented M currents in SCG neurons and KCNQ2/3 currents in tsA cells via strong voltage-independent and modest voltage-dependent actions. Expression of individual KCNQ subunits in tsA cells revealed voltage-independent augmentation of KCNQ2, but not KCNQ1 nor KCNQ3, currents by NEM indicating that this action on SCG M currents likely localizes to KCNQ2. Much of the voltage-independent action is lost after the C242T mutation in KCNQ2. 4. The correspondence of NEM effects on expressed KCNQ2/3 and SCG M currents, along with the antibody labelling, provide further evidence that KCNQ2 and KCNQ3 subunits strongly contribute to the M current of neurons. The site of NEM action may be important for treatment of diseases caused by under-expression of these channels.
摘要
  1. 人们认为KCNQ钾离子通道是神经元M电流的基础。为了探究KCNQ2和KCNQ3亚型是否是大鼠颈上神经节(SCG)神经元和海马体M电流的基础,我们制备了针对它们的特异性抗体,并且还使用了半胱氨酸烷基化剂N - 乙基马来酰亚胺(NEM)作为亚基组成的额外探测手段。2. 在转染了克隆的KCNQ1 - 5亚基的tsA - 201(tsA)细胞上进行测试时,我们的抗体对相应亚型显示出高亲和力和选择性。这些抗体对SCG神经元和海马体切片的免疫染色水平与tsA细胞中表达的通道相似,表明KCNQ2和KCNQ3存在于SCG和海马体神经元中。一些海马体区域仅含有KCNQ2或KCNQ3亚基,这表明存在由KCNQ2/3异源多聚体以外的通道产生的M电流。3. 我们发现NEM通过强大的电压非依赖性和适度的电压依赖性作用增强了SCG神经元中的M电流以及tsA细胞中的KCNQ2/3电流。在tsA细胞中单独表达KCNQ亚基表明,NEM对KCNQ2电流有电压非依赖性增强作用,但对KCNQ1和KCNQ3电流没有,这表明对SCG M电流的这种作用可能定位于KCNQ2。KCNQ2中C242T突变后,大部分电压非依赖性作用丧失。4. NEM对表达的KCNQ2/3和SCG M电流的作用的一致性,以及抗体标记,进一步证明了KCNQ2和KCNQ3亚基对神经元M电流有很大贡献。NEM作用位点可能对治疗由这些通道表达不足引起的疾病很重要。