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秀丽隐杆线虫的神经元基因组。

The neuronal genome of Caenorhabditis elegans.

作者信息

Hobert Oliver

机构信息

Columbia University Medical Center, HHMI, New York, NY, USA.

出版信息

WormBook. 2013 Aug 13:1-106. doi: 10.1895/wormbook.1.161.1.

Abstract

The ~100 MB genome of C. elegans codes for ~20,000 protein-coding genes many of which are required for the function of the nervous system, composed of 302 neurons in the adult hermaphrodite and of 383 neurons in the adult male. In addition to housekeeping genes, a differentiated neuron is thought to express many hundreds if not thousands of genes that define its functional properties. These genes code for ion channels, G-protein-coupled receptors, neurotransmitter-synthesizing enzymes, transporters and receptors, neuropeptides and their receptors, cell adhesion molecules, motor proteins, signaling molecules and many others. Collectively such genes have been referred to as "terminal differentiation genes" or "effector genes". The differential expression of distinct combinations of terminal differentiation genes define different neuron types. This paper provides a compendium of more than 2,800 putative terminal differentiation genes. One pervasive theme revealed by the analysis of many gene families is the nematode-specific expansions of many neuron function-related gene families, including, for example, many types of ion channel families, sensory receptors and neurotransmitter receptors. The gene lists provided here can serve multiple purposes. They can serve as quick reference guides for individual gene families or they can be used to mine large datasets (e.g., expression datasets) for genes with likely functions in the nervous system. They also serve as a starting point for future projects. For example, a comprehensive understanding of the regulation of the often complex expression patterns of these genes in the nervous system will eventually explain how nervous systems are built.

摘要

秀丽隐杆线虫约100兆字节的基因组编码约20000个蛋白质编码基因,其中许多基因是神经系统功能所必需的。成年雌雄同体线虫的神经系统由302个神经元组成,成年雄性线虫的神经系统由383个神经元组成。除了管家基因外,一个分化的神经元被认为会表达成百上千个定义其功能特性的基因。这些基因编码离子通道、G蛋白偶联受体、神经递质合成酶、转运蛋白和受体、神经肽及其受体、细胞粘附分子、运动蛋白、信号分子等许多其他物质。这些基因统称为“终末分化基因”或“效应基因”。终末分化基因不同组合的差异表达定义了不同的神经元类型。本文提供了一份超过2800个假定终末分化基因的纲要。对许多基因家族的分析揭示了一个普遍的主题,即许多与神经元功能相关的基因家族在线虫中特异性扩增,例如包括许多类型的离子通道家族、感觉受体和神经递质受体。这里提供的基因列表可用于多种目的。它们可以作为单个基因家族的快速参考指南,也可以用于在大型数据集中挖掘可能在神经系统中发挥作用的基因(例如表达数据集)。它们还可作为未来项目的起点。例如,全面了解这些基因在神经系统中通常复杂的表达模式的调控,最终将解释神经系统是如何构建的。

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