Department of Biology, College of William and Mary Williamsburg, VA, USA.
Front Mol Neurosci. 2010 Apr 22;3:11. doi: 10.3389/fnmol.2010.00011. eCollection 2010.
Glycine's role as an inhibitory neurotransmitter in the adult vertebrate nervous system has been well characterized in a number of different model organisms. However, a full understanding of glycinergic transmission requires a knowledge of how glycinergic synapses emerge and the role of glycinergic signaling during development. Recent literature has provided a detailed picture of the developmental expression of many of the molecular components that comprise the glycinergic phenotype, namely the glycine transporters and the glycine receptor subunits; the transcriptional networks leading to the expression of this important neurotransmitter phenotype are also being elucidated. An equally important focus of research has revealed the critical role of glycinergic signaling in sculpting many different aspects of neural development. This review examines the current literature detailing the expression patterns of the components of the glycinergic phenotype in various vertebrate model organisms over the course of development and the molecular mechanisms governing the expression of the glycinergic phenotype. The review then surveys the recent work on the role of glycinergic signaling in the developing nervous system and concludes with an overview of areas for further research.
甘氨酸作为成年脊椎动物神经系统中的抑制性神经递质,在许多不同的模式生物中已经得到了很好的描述。然而,要全面了解甘氨酸能传递,就需要了解甘氨酸能突触的出现以及甘氨酸信号在发育过程中的作用。最近的文献提供了一个详细的画面,说明了许多组成甘氨酸能表型的分子成分的发育表达,即甘氨酸转运体和甘氨酸受体亚基;导致这种重要神经递质表型表达的转录网络也正在被阐明。同样重要的研究焦点揭示了甘氨酸信号在塑造神经发育的许多不同方面的关键作用。这篇综述检查了目前的文献,详细描述了各种脊椎动物模式生物在发育过程中甘氨酸能表型成分的表达模式,以及调控甘氨酸能表型表达的分子机制。然后,综述了甘氨酸信号在发育中的神经系统中的作用的最新研究,并概述了进一步研究的领域。