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通过对环噻嗪的不同敏感性揭示大鼠海马神经元中的AMPA受体异质性

AMPA receptor heterogeneity in rat hippocampal neurons revealed by differential sensitivity to cyclothiazide.

作者信息

Fleck M W, Bähring R, Patneau D K, Mayer M L

机构信息

Laboratory of Cellular and Molecular Neurophysiology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-4495, USA.

出版信息

J Neurophysiol. 1996 Jun;75(6):2322-33. doi: 10.1152/jn.1996.75.6.2322.

DOI:10.1152/jn.1996.75.6.2322
PMID:8793745
Abstract
  1. The kinetics of onset of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor desensitization by glutamate, and the extent of attenuation of AMPA receptor desensitization by cyclothiazide, showed pronounced cell-to-cell variation in cultures of rat hippocampal neurons. Cultures prepared from area CA1 stratum radiatum tended to show weaker modulation by cyclothiazide than cultures prepared from the whole hippocampus. 2. Kinetic analysis of concentration jump responses to glutamate revealed multiple populations of receptors with fast (approximately 400 ms), intermediate (approximately 2-4 s), and slow (> 20 s) time constants for recovery from modulation by cyclothiazide. The amplitudes of these components varied widely between cells, suggesting the existence of at least three populations of AMPA receptor subtypes, the relative density of which varied from cell to cell. 3. The complex patterns of sensitivity to cyclothiazide seen in hippocampal neurons could be reconstituted by assembly of recombinant AMPA receptor subunits generated from cDNAs encoding the flip (i) and flop (o) splice variants of the GluR-A and GluR-B subunits. Recovery from modulation by cyclothiazide was slower for GluR-AiBi and GluR-AoBi than for GluR-AiBo and GluR-AoBo. 4. Coexpression of the flip and flop splice variants of GluR-A, in the absence of GluR-B, revealed that heteromeric AMPA receptors with intermediate sensitivity to cyclothiazide, similar to responses observed for the combinations GluR-AoBi or GluR-AiBo, could be generated independently of the presence of the GluR-B subunit. However, recovery from modulation by cyclothiazide was twofold slower for GluR-AiBi than for homomeric GluR-Ai, indicating that the GluR-A and GluR-B subunits are not functionally equivalent in controlling sensitivity to cyclothiazide. 5. These results demonstrate that AMPA receptors expressed in hippocampal neurons are assembled in a variety of subunit and splice variant combinations that might serve as a mechanism to fine-tune the kinetics of synaptic transmission.
摘要
  1. 谷氨酸引起的α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体脱敏的起始动力学,以及环噻嗪对AMPA受体脱敏的减弱程度,在大鼠海马神经元培养物中表现出明显的细胞间差异。从CA1辐射层区域制备的培养物相比从整个海马体制备的培养物,对环噻嗪的调节作用往往较弱。2. 对谷氨酸浓度跃变反应的动力学分析揭示了多个受体群体,它们从环噻嗪调节中恢复的时间常数分别为快速(约400毫秒)、中间(约2 - 4秒)和缓慢(>20秒)。这些成分的幅度在细胞间差异很大,表明至少存在三种AMPA受体亚型群体,其相对密度因细胞而异。3. 在海马神经元中观察到的对环噻嗪敏感性的复杂模式,可以通过组装由编码GluR - A和GluR - B亚基的翻转(i)和摇摆(o)剪接变体的cDNA产生的重组AMPA受体亚基来重建。对于GluR - AiBi和GluR - AoBi,从环噻嗪调节中恢复的速度比GluR - AiBo和GluR - AoBo慢。4. 在没有GluR - B的情况下,GluR - A的翻转和摇摆剪接变体的共表达表明,对环噻嗪具有中等敏感性的异源AMPA受体,类似于GluR - AoBi或GluR - AiBo组合所观察到的反应,可以独立于GluR - B亚基的存在而产生。然而,对于GluR - AiBi,从环噻嗪调节中恢复的速度比同源的GluR - Ai慢两倍,表明GluR - A和GluR - B亚基在控制对环噻嗪的敏感性方面功能不等同。5. 这些结果表明,海马神经元中表达的AMPA受体以多种亚基和剪接变体组合进行组装,这可能是一种微调突触传递动力学的机制。

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