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本文引用的文献

1
The endogenous redox agent L-cysteine induces T-type Ca2+ channel-dependent sensitization of a novel subpopulation of rat peripheral nociceptors.内源性氧化还原剂L-半胱氨酸可诱导大鼠外周伤害感受器新亚群的T型Ca2+通道依赖性敏化。
J Neurosci. 2005 Sep 21;25(38):8766-75. doi: 10.1523/JNEUROSCI.2527-05.2005.
2
Sleep, epilepsy and thalamic reticular inhibitory neurons.睡眠、癫痫与丘脑网状抑制性神经元
Trends Neurosci. 2005 Jun;28(6):317-24. doi: 10.1016/j.tins.2005.03.007.
3
Functional characterization and neuronal modeling of the effects of childhood absence epilepsy variants of CACNA1H, a T-type calcium channel.T型钙通道CACNA1H的儿童失神癫痫变体效应的功能表征与神经元建模
J Neurosci. 2005 May 11;25(19):4844-55. doi: 10.1523/JNEUROSCI.0847-05.2005.
4
Different kinetic properties of two T-type Ca2+ currents of rat reticular thalamic neurones and their modulation by enflurane.大鼠丘脑网状核神经元两种T型Ca2+电流的不同动力学特性及其受恩氟烷的调制
J Physiol. 2005 Jul 1;566(Pt 1):125-42. doi: 10.1113/jphysiol.2005.086579. Epub 2005 Apr 21.
5
Contrasting anesthetic sensitivities of T-type Ca2+ channels of reticular thalamic neurons and recombinant Ca(v)3.3 channels.丘脑网状核神经元T型Ca2+通道与重组Ca(v)3.3通道麻醉敏感性的对比
Br J Pharmacol. 2005 Jan;144(1):59-70. doi: 10.1038/sj.bjp.0706020.
6
New water-soluble phosphines as reductants of peptide and protein disulfide bonds: reactivity and membrane permeability.新型水溶性膦作为肽和蛋白质二硫键的还原剂:反应活性与膜通透性
Biochemistry. 2004 Dec 7;43(48):15195-203. doi: 10.1021/bi048329a.
7
Paradoxical potentiation of neuronal T-type Ca2+ current by ATP at resting membrane potential.在静息膜电位下,ATP对神经元T型Ca2+电流的反常增强作用。
J Neurosci. 2004 Jun 16;24(24):5592-602. doi: 10.1523/JNEUROSCI.1038-04.2004.
8
Abnormal coronary function in mice deficient in alpha1H T-type Ca2+ channels.缺乏α1H T型钙通道的小鼠的冠状动脉功能异常。
Science. 2003 Nov 21;302(5649):1416-8. doi: 10.1126/science.1089268.
9
A mechanism for the direct regulation of T-type calcium channels by Ca2+/calmodulin-dependent kinase II.一种由Ca2+/钙调蛋白依赖性激酶II直接调节T型钙通道的机制。
J Neurosci. 2003 Nov 5;23(31):10116-21. doi: 10.1523/JNEUROSCI.23-31-10116.2003.
10
Alternative splicing of the rat Ca(v)3.3 T-type calcium channel gene produces variants with distinct functional properties(1).大鼠Ca(v)3.3 T型钙通道基因的可变剪接产生具有不同功能特性的变体(1)。
FEBS Lett. 2002 Sep 25;528(1-3):272-8. doi: 10.1016/s0014-5793(02)03341-0.

CaV3.2是大鼠和小鼠丘脑中T型钙通道氧化还原调节的主要分子底物。

CaV3.2 is the major molecular substrate for redox regulation of T-type Ca2+ channels in the rat and mouse thalamus.

作者信息

Joksovic Pavle M, Nelson Michael T, Jevtovic-Todorovic Vesna, Patel Manoj K, Perez-Reyes Edward, Campbell Kevin P, Chen Chien-Chang, Todorovic Slobodan M

机构信息

Department of Anesthesiology, University of Virginia Health System, Mail Box 800710, Charlottesville, VA 22908-0710, USA.

出版信息

J Physiol. 2006 Jul 15;574(Pt 2):415-30. doi: 10.1113/jphysiol.2006.110395. Epub 2006 Apr 27.

DOI:10.1113/jphysiol.2006.110395
PMID:16644797
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1817755/
Abstract

Although T-type Ca(2+) channels in the thalamus play a crucial role in determining neuronal excitability and are involved in sensory processing and pathophysiology of epilepsy, little is known about the molecular mechanisms involved in their regulation. Here, we report that reducing agents, including endogenous sulfur-containing amino acid l-cysteine, selectively enhance native T-type currents in reticular thalamic (nRT) neurons and recombinant Ca(V)3.2 (alpha1H) currents, but not native and recombinant Ca(V)3.1 (alpha1G)- and Ca(V)3.3 (alpha1I)-based currents. Consistent with this data, T-type currents of nRT neurons from transgenic mice lacking Ca(V)3.2 channel expression were not modulated by reducing agents. In contrast, oxidizing agents inhibited all native and recombinant T-type currents non-selectively. Thus, our findings directly demonstrate that Ca(V)3.2 channels are the main molecular substrate for redox regulation of neuronal T-type channels. In addition, because thalamic T-type channels generate low-threshold Ca(2+) spikes that directly correlate with burst firing in these neurons, differential redox regulation of these channels may have an important function in controlling cellular excitability in physiological and pathological conditions and fine-tuning of the flow of sensory information into the central nervous system.

摘要

尽管丘脑的T型Ca(2+)通道在决定神经元兴奋性方面起着关键作用,并参与癫痫的感觉处理和病理生理学过程,但对其调节所涉及的分子机制却知之甚少。在此,我们报告包括内源性含硫氨基酸L-半胱氨酸在内的还原剂能选择性增强丘脑网状核(nRT)神经元的天然T型电流以及重组Ca(V)3.2(α1H)电流,但不能增强天然和重组的基于Ca(V)3.1(α1G)和Ca(V)3.3(α1I)的电流。与该数据一致,缺乏Ca(V)3.2通道表达的转基因小鼠的nRT神经元的T型电流不受还原剂调节。相反,氧化剂非选择性地抑制所有天然和重组的T型电流。因此,我们的研究结果直接表明Ca(V)3.2通道是神经元T型通道氧化还原调节的主要分子底物。此外,由于丘脑T型通道产生与这些神经元的爆发式放电直接相关的低阈值Ca(2+)尖峰,这些通道的差异性氧化还原调节可能在生理和病理条件下控制细胞兴奋性以及微调感觉信息向中枢神经系统的传递中具有重要作用。