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小鼠神经肌肉接头处递质释放中Cav2.1通道辅助亚基的冗余性

Redundancy of Cav2.1 channel accessory subunits in transmitter release at the mouse neuromuscular junction.

作者信息

Kaja Simon, Todorov Boyan, van de Ven Rob C G, Ferrari Michel D, Frants Rune R, van den Maagdenberg Arn M J M, Plomp Jaap J

机构信息

Department of Neurology, Leiden University Medical Centre, Leiden, The Netherlands.

出版信息

Brain Res. 2007 Apr 27;1143:92-101. doi: 10.1016/j.brainres.2007.01.063. Epub 2007 Jan 26.

Abstract

Ca(v)2.1 (P/Q-type) channels possess a voltage-sensitive pore-forming alpha(1) subunit that can associate with the accessory subunits alpha(2)delta, beta and gamma. The primary role of Ca(v)2.1 channels is to mediate transmitter release from nerve terminals both in the central and peripheral nervous system. Whole-cell voltage-clamp studies in in vitro expression systems have indicated that accessory channel subunits can have diverse modulatory effects on membrane expression and biophysical properties of Ca(v)2.1 channels. However, there is only limited knowledge on whether similar modulation also occurs in the specific presynaptic environment in vivo and, hence, whether accessory subunits influence neurotransmitter release. Ducky, lethargic and stargazer are mutant mice that lack functional alpha(2)delta-2, beta(4) and gamma(2) accessory Ca(v) channel subunits, respectively. The neuromuscular junction (NMJ) is a peripheral synapse, where transmitter release is governed exclusively by Ca(v)2.1 channels, and which can be characterized electrophysiologically with relative experimental ease. In order to investigate a possible synaptic influence of accessory subunits in detail, we electrophysiologically measured acetylcholine (ACh) release at NMJs of these three mutants. Surprisingly, we did not find any changes compared to wild-type littermates, other than a small reduction (25%) of evoked ACh release at ducky NMJs. This effect is most likely due to the approximately 40% reduced synapse size, associated with the reduced size of ducky mice, rather than resulting directly from reduced Ca(v)2.1 channel function due to alpha(2)delta-2 absence. We conclude that alpha(2)delta-2, beta(4), and gamma(2) accessory subunits are redundant for the transmitter release-mediating function of presynaptic Ca(v)2.1 channels at the mouse NMJ.

摘要

Ca(v)2.1(P/Q型)通道具有一个电压敏感的孔形成α(1)亚基,该亚基可与辅助亚基α(2)δ、β和γ结合。Ca(v)2.1通道的主要作用是介导中枢和外周神经系统中神经末梢的递质释放。体外表达系统中的全细胞电压钳研究表明,辅助通道亚基可对Ca(v)2.1通道的膜表达和生物物理特性产生多种调节作用。然而,对于在体内特定的突触前环境中是否也会发生类似的调节,以及辅助亚基是否会影响神经递质释放,人们所知甚少。Ducky、嗜睡和凝视突变小鼠分别缺乏功能性的α(2)δ-2、β(4)和γ(2)辅助Ca(v)通道亚基。神经肌肉接头(NMJ)是一种外周突触,其递质释放完全由Ca(v)2.1通道控制,并且可以相对容易地通过电生理学方法进行表征。为了详细研究辅助亚基可能的突触影响,我们通过电生理学方法测量了这三种突变体神经肌肉接头处的乙酰胆碱(ACh)释放。令人惊讶的是,与野生型同窝小鼠相比,我们没有发现任何变化,除了在ducky神经肌肉接头处诱发的ACh释放略有减少(25%)。这种效应很可能是由于ducky小鼠体型减小导致突触大小约减少40%,而不是直接由于缺乏α(2)δ-2导致Ca(v)2.1通道功能降低。我们得出结论,α(2)δ-2、β(4)和γ(2)辅助亚基对于小鼠神经肌肉接头处突触前Ca(v)2.1通道介导递质释放的功能是冗余的。

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