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海马神经元发育过程中L型和N型钙通道的不同定位与功能

Different localizations and functions of L-type and N-type calcium channels during development of hippocampal neurons.

作者信息

Pravettoni E, Bacci A, Coco S, Forbicini P, Matteoli M, Verderio C

机构信息

Department of Medical Pharmacology, CNR Cellular and Molecular Pharmacology and "B. Ceccarelli" Centers, via Vanvitelli 32, Milan, 20129, Italy.

出版信息

Dev Biol. 2000 Nov 15;227(2):581-94. doi: 10.1006/dbio.2000.9872.

Abstract

Using immunocytochemical assays and patch-clamp and calcium-imaging recordings, we demonstrate that L-type and N-type calcium channels have distinct patterns of expression and distribution and play different functional roles during hippocampal neuron differentiation. L-type channels, which support the depolarization-induced calcium influx in neurons from the very early developmental stages, are functionally restricted to the somatodendritic compartment throughout neuronal development and play a crucial role in supporting neurite outgrowth at early developmental stages. N-type channels, which start contributing at later neuronal differentiation stages (3-4 DIV), are also functionally expressed in the axons of immature neurons. At this developmental stage preceding synaptogenesis, N-type (but not L-type) channels are involved in controlling synaptic vesicle recycling. It is only at later developmental stages (10-12 DIV), when the neurons have established a clear axodendritic polarity and form synaptic contacts, that N-type channels are progressively excluded from the axon. Electrophysiological recordings of single neurons growing in microislands revealed that synaptic maturation coincides with a progressive increase in N-type channels in the somatodendritic region and a progressive decrease in the N-type channels supporting glutamate release from the presynaptic terminal. These results indicate that L-type and N-type calcium channels undergo dynamic, developmentally regulated rearrangements in regional distribution and function and also suggest that different mechanisms may be involved in the sorting and/or stabilization of these two types of channels in different plasma membrane domains during neuronal differentiation.

摘要

通过免疫细胞化学分析、膜片钳和钙成像记录,我们证明L型和N型钙通道在海马神经元分化过程中具有不同的表达和分布模式,并发挥不同的功能作用。L型通道从发育早期阶段就支持神经元中去极化诱导的钙内流,在整个神经元发育过程中其功能局限于树突-胞体区域,并在发育早期阶段支持神经突生长中发挥关键作用。N型通道在神经元分化后期阶段(3 - 4天体外培养)开始发挥作用,在未成熟神经元的轴突中也有功能表达。在突触形成之前的这个发育阶段,N型(而非L型)通道参与控制突触小泡循环。只有在发育后期阶段(10 - 12天体外培养),当神经元建立了明确的轴突-树突极性并形成突触联系时,N型通道才逐渐从轴突中被排除。在微岛中生长的单个神经元的电生理记录显示,突触成熟与树突-胞体区域N型通道的逐渐增加以及支持突触前终末谷氨酸释放的N型通道的逐渐减少相吻合。这些结果表明,L型和N型钙通道在区域分布和功能上经历了动态的、发育调控的重排,也表明在神经元分化过程中,不同机制可能参与了这两种类型通道在不同质膜结构域中的分选和/或稳定。

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