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离子通道与神经细胞的早期发育。

Ion channels and early development of neural cells.

作者信息

Takahashi K, Okamura Y

机构信息

Department of Medical Physiology, Meiji College of Pharmacy, Tokyo, Japan.

出版信息

Physiol Rev. 1998 Apr;78(2):307-37. doi: 10.1152/physrev.1998.78.2.307.

Abstract

In this review we underscore the merits of using voltage-dependent ion channels as markers for neuronal differentiation from the early stages of uncommitted embryonic blastomeres. Furthermore, a fairly large part of the review is devoted to the descriptions of the establishment of a simple model system for neural induction derived from the cleavage-arrested eight-cell ascidian embryo by pairing a single ectodermal with a single vegetal blastomere as a competent and an inducer cell, respectively. The descriptions are focused particularly on the early developmental processes of various ion channels in neuronal and other excitable membranes observed in this extraordinarily simple system, and we compare these results with those in other significant and definable systems for neural differentiation. It is stressed that this simple system, for which most of the electronic and optical methods and various injection experiments are applicable, may be useful for future molecular physiological studies on the intracellular process of differentiation of the early embryonic cells. We have also highlighted the importance of suppressive mechanisms for cellular differentiation from the experimental results, such as epidermal commitment of the cleavage-arrested one-cell Halocynthia embryos or suppression of epidermal-specific transcription of inward rectifier channels by neural induction signals. It was suggested that reciprocal suppressive mechanisms at the transcriptional level may be one of the key processes for cellular differentiation, by which exclusivity of cell types is maintained.

摘要

在本综述中,我们强调了将电压依赖性离子通道用作未分化胚胎卵裂球早期神经元分化标志物的优点。此外,综述的相当一部分内容致力于描述一个简单的神经诱导模型系统的建立,该系统源自卵裂阻滞的八细胞海鞘胚胎,通过将单个外胚层细胞与单个植物性卵裂球分别配对,作为感受态细胞和诱导细胞。这些描述特别关注在这个极其简单的系统中观察到的神经元和其他可兴奋膜中各种离子通道的早期发育过程,并且我们将这些结果与其他重要且可定义的神经分化系统中的结果进行比较。需要强调的是,这个简单的系统适用于大多数电子和光学方法以及各种注射实验,可能对未来关于早期胚胎细胞分化细胞内过程的分子生理学研究有用。我们还从实验结果中强调了细胞分化抑制机制的重要性,例如卵裂阻滞的单细胞柄海鞘胚胎的表皮分化,或神经诱导信号对内向整流通道表皮特异性转录的抑制。有人提出,转录水平上的相互抑制机制可能是细胞分化的关键过程之一,通过该过程维持细胞类型的排他性。

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