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T型钙电流是猫和大鼠外侧膝状核细胞中低阈值钙电位的基础。

A T-type Ca2+ current underlies low-threshold Ca2+ potentials in cells of the cat and rat lateral geniculate nucleus.

作者信息

Crunelli V, Lightowler S, Pollard C E

机构信息

Department of Pharmacology, St George's Hospital Medical School, London.

出版信息

J Physiol. 1989 Jun;413:543-61. doi: 10.1113/jphysiol.1989.sp017668.

DOI:10.1113/jphysiol.1989.sp017668
PMID:2557441
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1189115/
Abstract
  1. The characteristics of a transient inward Ca2+ current (IT) underlying low-threshold Ca2+ potentials were studied in projection cells of the cat and rat dorsal lateral geniculate nucleus (LGN) in vitro using the single-electrode voltage-clamp technique. 2. In cat LGN slices perfused at 25 degrees C with a solution which included 1 mM-Ca2+ and 3 mM-Mg2+, IT could be evoked by depolarizing voltage steps to -55 mV from a holding potential (Vh) of -95 mV and was abolished by reducing [Ca2+]o from 1 to 0.1 mM. IT was also blocked by 8 mM-Mg2+ and 500 microM-Ni2+, but 500 microM-Cd2+ was a significantly less effective antagonist. 3. The inactivation of IT, which occurred at Vh positive to -65 mV, was removed as Vh approached -100 mV. The process of inactivation removal was also time dependent, with 800-1000 ms needed for total removal. Activation curves for IT showed a threshold of -70 mV and illustrated that IT was extremely voltage sensitive over the voltage range from -65 to -55 mV. 4. The decay phase of IT followed a single-exponential time course with a time constant of decay which was voltage sensitive and ranged from 20 to 100 ms. The mean peak conductance increase associated with IT was 8.4 nS (+/-0.9, S.E.M.). 5. In more 'physiological' conditions (35 degrees C and 1.5 mM-Ca2+, 1 mM-Mg2+) the voltage dependence of activation and inactivation were unaffected. However, the development and decay of IT proceeded more rapidly and only 500-600 ms were needed for total removal of inactivation. Under these conditions, the use of voltage ramps showed that depolarization rates of greater than 30 mV/s were necessary for IT activation. 6. The use of multiple voltage-step protocols illustrated that the process of inactivation removal was rapidly reversed by brief returns to a Vh of -50 mV. Furthermore, any delay in IT activation, once the LGN cell membrane potential was in the IT activation range, resulted in a current of reduced amplitude. 7. Although IT in rat LGN cells was briefer and had a shorter latency to peak, it was otherwise similar to that seen in cat LGN cells. 8. The characteristics of IT are very similar to those of the T-type Ca2+ currents of other excitable membranes. The properties of IT are discussed with respect to its role in generating the low-threshold Ca2+ potentials which are central to the oscillatory behaviour of thalamic projection cells.
摘要
  1. 采用单电极电压钳技术,在体外研究了猫和大鼠背外侧膝状核(LGN)投射细胞中低阈值Ca2+电位所对应的瞬时内向Ca2+电流(IT)的特性。2. 在25℃下用含1 mM - Ca2+和3 mM - Mg2+的溶液灌注猫LGN脑片时,从 - 95 mV的钳制电位(Vh)去极化至 - 55 mV可诱发IT,将细胞外[Ca2+]从1 mM降至0.1 mM可消除IT。IT也可被8 mM - Mg2+和500 μM - Ni2+阻断,但500 μM - Cd2+的拮抗作用明显较弱。3. IT的失活发生在Vh正于 - 65 mV时,当Vh接近 - 100 mV时失活被消除。失活消除过程也具有时间依赖性,完全消除需要800 - 1000 ms。IT的激活曲线显示阈值为 - 70 mV,表明在 - 65至 - 55 mV的电压范围内IT对电压极其敏感。4. IT的衰减相呈单指数时间进程,衰减时间常数对电压敏感,范围为20至100 ms。与IT相关的平均峰值电导增加为8.4 nS(±0.9,标准误)。5. 在更“生理”的条件下(35℃,1.5 mM - Ca2+,1 mM - Mg2+),激活和失活的电压依赖性不受影响。然而,IT的产生和衰减更快,完全消除失活仅需500 - 600 ms。在这些条件下,使用电压斜坡显示IT激活需要大于30 mV/s的去极化速率。6. 使用多个电压阶跃方案表明,短暂回到 - 50 mV的Vh可迅速逆转失活消除过程。此外,一旦LGN细胞膜电位处于IT激活范围内,IT激活的任何延迟都会导致电流幅度减小。7. 尽管大鼠LGN细胞中的IT持续时间更短,达到峰值的潜伏期更短,但在其他方面与猫LGN细胞中的IT相似。8. IT的特性与其他可兴奋膜的T型Ca2+电流非常相似。本文讨论了IT的特性及其在产生低阈值Ca++电位中的作用,低阈值Ca++电位是丘脑投射细胞振荡行为的核心。

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本文引用的文献

1
THE VENTRO-BASAL COMPLEX OF THE THALAMUS: TYPES OF CELLS, THEIR RESPONSES AND THEIR FUNCTIONAL ORGANIZATION.丘脑腹侧基底复合体:细胞类型、细胞反应及其功能组织
J Physiol. 1964 Nov;174(3):370-99. doi: 10.1113/jphysiol.1964.sp007493.
2
THE ROLE OF INHIBITION IN THE PHASING OF SPONTANEOUS THALAMO-CORTICAL DISCHARGE.抑制在自发性丘脑-皮质放电的相位调节中的作用。
J Physiol. 1964 Oct;173(3):459-80. doi: 10.1113/jphysiol.1964.sp007468.
3
Fast inward-rectifying current accounts for anomalous rectification in olfactory cortex neurones.快速内向整流电流导致嗅觉皮层神经元出现反常整流。
J Physiol. 1983 Feb;335:153-78. doi: 10.1113/jphysiol.1983.sp014526.
4
Ionic basis for the electro-responsiveness and oscillatory properties of guinea-pig thalamic neurones in vitro.豚鼠丘脑神经元在体外电反应性和振荡特性的离子基础
J Physiol. 1984 Apr;349:227-47. doi: 10.1113/jphysiol.1984.sp015154.
5
Electrophysiological properties of guinea-pig thalamic neurones: an in vitro study.豚鼠丘脑神经元的电生理特性:一项体外研究。
J Physiol. 1984 Apr;349:205-26. doi: 10.1113/jphysiol.1984.sp015153.
6
Electrophysiology of neurons of lateral thalamic nuclei in cat: resting properties and burst discharges.猫外侧丘脑核神经元的电生理学:静息特性与爆发式放电
J Neurophysiol. 1984 Jun;51(6):1196-219. doi: 10.1152/jn.1984.51.6.1196.
7
Lateral geniculate nucleus unitary discharge in sleep and waking: state- and rate-specific aspects.睡眠和清醒状态下外侧膝状体的单位放电:状态和频率特异性方面。
J Neurophysiol. 1983 Oct;50(4):798-818. doi: 10.1152/jn.1983.50.4.798.
8
A low voltage-activated calcium conductance in embryonic chick sensory neurons.胚胎期鸡感觉神经元中的低电压激活钙电导。
Biophys J. 1984 Sep;46(3):413-8. doi: 10.1016/S0006-3495(84)84037-0.
9
Theory and operation of a single microelectrode voltage clamp.单微电极电压钳的理论与操作
J Neurosci Methods. 1984 Jun;11(2):101-27. doi: 10.1016/0165-0270(84)90029-3.
10
Electrophysiology of neurons of lateral thalamic nuclei in cat: mechanisms of long-lasting hyperpolarizations.猫外侧丘脑核神经元的电生理学:持久超极化的机制
J Neurophysiol. 1984 Jun;51(6):1220-35. doi: 10.1152/jn.1984.51.6.1220.