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与培养的小脑浦肯野神经元的体细胞和树突区域中谷氨酸受体激活相关的Ca2+信号通路。

Ca2+ signaling pathways linked to glutamate receptor activation in the somatic and dendritic regions of cultured cerebellar purkinje neurons.

作者信息

Gruol D L, Netzeband J G, Parsons K L

机构信息

Department of Neuropharmacology, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

J Neurophysiol. 1996 Nov;76(5):3325-40. doi: 10.1152/jn.1996.76.5.3325.

Abstract
  1. Ca2+ signaling elicited by ionotropic alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA)/kainate (iGluR) and metabotropic (mGluR) glutamate receptor agonists was studied in the somatic and dendritic regions of cultured cerebellar Purkinje neurons using microscopic video imaging and the Ca2+ sensitive dye fura-2. 2. iGluR and mGluR agonists and K+ depolarization applied by brief micropressure pulses evoked Ca2+ signals in both the somatic and dendritic regions of all Purkinje neurons studied. The Ca2+ signals were generated simultaneously in both cellular regions. The Ca+ signals to these stimulants were similar in general form, consisting of an initial peak and slow recovery phase, but differed in details of amplitude, time course, and complexity. 3. Removal of extracellular Ca2+ abolished the Ca2+ signal to the iGluR agonist AMPA, indicating that Ca2+ influx was essential to the generation of Ca2+ signals by iGluR agonists. The Ca2+ channel blocker lanthanum almost completely eliminated the Ca2+ signals to AMPA, indicating that Ca2+ influx through voltage-sensitive Ca2+ channels was the main pathway for Ca2+ influx. Omega-agatoxin IVA, a P-type Ca2+ channel blocker, significantly reduced the Ca2+ signals to AMPA suggesting that Ca2+ influx was predominately through P-type Ca2+ channels. 4. Pharmacological manipulation of intracellular Ca2+ stores significantly reduced the Ca2+ signals to AMPA, indicating that release of Ca2+ from intracellular Ca2+ stores also plays a prominent role in the generation of the Ca2+ signals to iGluR agonists. These manipulations included blocking Ca2+ release from intracellular stores with dantrolene, an antagonist at the ryanodine receptor that controls Ca2+ release from one pool of intracellular Ca2+ stores, and depletion of intracellular Ca2+ stores with caffeine or ryanodine. 5. Ca2+ influx through voltage-sensitive Ca2+ channels did not appear to be involved in the Ca2+ signals to mGluR activation, because neither lanthanum nor omega-agatoxin IVA altered Ca2+ signals to mGluR agonists. Manipulation of intracellular stores with Ca(2+)-ATPase inhibitors and dantrolene significantly reduced the Ca2+ signal to mGluR agonists, indicating that Ca2+ signals were derived from both the inositol trisphosphate (IP3) and the ryanodine receptor-controlled intracellular Ca2+ stores. 6. Ca2+ signals to the iGluR agonist AMPA correlated temporally with the prolonged, multiphasic membrane responses elicited by similar agonist application in parallel electrophysiological studies. Pharmacological manipulation of Ca2+ influx and release of Ca2+ from intracellular stores significantly influenced components of the membrane response to AMPA, indicating a potential modulator or mediator role for Ca2+ in the membrane response to iGluR activation.
摘要
  1. 利用显微视频成像和Ca2+ 敏感染料fura-2,研究了离子型α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)/海人藻酸(kainate,iGluR)和代谢型(mGluR)谷氨酸受体激动剂诱发的Ca2+ 信号,研究对象为培养的小脑浦肯野神经元的胞体和树突区域。2. 通过短暂微压脉冲施加的iGluR和mGluR激动剂以及K+ 去极化,在所有研究的浦肯野神经元的胞体和树突区域均诱发了Ca2+ 信号。Ca2+ 信号在两个细胞区域同时产生。这些刺激引发的Ca+ 信号总体形式相似,包括一个初始峰值和缓慢恢复阶段,但在幅度、时间进程和复杂性细节上有所不同。3. 去除细胞外Ca2+ 消除了对iGluR激动剂AMPA的Ca2+ 信号,表明Ca2+ 内流对于iGluR激动剂产生Ca2+ 信号至关重要。Ca2+ 通道阻滞剂镧几乎完全消除了对AMPA的Ca2+ 信号,表明通过电压敏感性Ca2+ 通道的Ca2+ 内流是Ca2+ 内流的主要途径。ω-芋螺毒素IVA,一种P型Ca2+ 通道阻滞剂,显著降低了对AMPA的Ca2+ 信号,表明Ca2+ 内流主要通过P型Ca2+ 通道。4. 对细胞内Ca2+ 储存的药理学操作显著降低了对AMPA的Ca2+ 信号,表明从细胞内Ca2+ 储存中释放Ca2+ 在iGluR激动剂产生Ca2+ 信号中也起重要作用。这些操作包括用丹曲林阻断细胞内储存释放Ca2+,丹曲林是ryanodine受体的拮抗剂,可控制从一组细胞内Ca2+ 储存中释放Ca2+,以及用咖啡因或ryanodine耗尽细胞内Ca2+ 储存。5. 通过电压敏感性Ca2+ 通道的Ca2+ 内流似乎不参与mGluR激活引发的Ca2+ 信号,因为镧和ω-芋螺毒素IVA均未改变对mGluR激动剂的Ca2+ 信号。用Ca(2+)-ATPase抑制剂和丹曲林对细胞内储存进行操作显著降低了对mGluR激动剂的Ca2+ 信号,表明Ca2+ 信号来自肌醇三磷酸(IP3)和ryanodine受体控制的细胞内Ca2+ 储存。6. 在平行的电生理研究中,对iGluR激动剂AMPA的Ca2+ 信号在时间上与类似激动剂应用引发的延长的多相膜反应相关。对Ca2+ 内流和从细胞内储存中释放Ca2+ 的药理学操作显著影响了对AMPA的膜反应成分,表明Ca2+ 在对iGluR激活的膜反应中具有潜在的调节或介导作用。

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