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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Stochastic left-right neuronal asymmetry in Caenorhabditis elegans
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Stochastic left-right neuronal asymmetry in Caenorhabditis elegans

机译:秀丽隐杆线虫的随机左右神经元不对称

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摘要

Left-right asymmetry in the nervous system is observed across species. Defects in left-right cerebral asymmetry are linked to several neurological diseases, but the molecular mechanisms underlying brain asymmetry in vertebrates are still not very well understood. The Caenorhabditis elegans left and right amphid wing 'C' (AWC) olfactory neurons communicate through intercellular calcium signalling in a transient embryonic gap junction neural network to specify two asymmetric subtypes, AWCOFF (default) and AWCON (induced), in a stochastic manner. Here, we highlight the molecular mechanisms that establish and maintain stochastic AWC asymmetry. As the components of the AWC asymmetry pathway are highly conserved, insights from the model organism C. elegans may provide a window onto how brain asymmetry develops in humans.
机译:跨物种观察到神经系统的左右不对称性。左右脑不对称性的缺陷与几种神经系统疾病有关,但脊椎动物中脑不对称性的分子机制仍不太清楚。秀丽隐杆线虫左右两翼“ C”(AWC)嗅觉神经元通过瞬时胚胎间隙连接神经网络中的细胞间钙信号传导,以随机方式指定两种不对称亚型,AWCOFF(默认)和AWCON(诱导)。在这里,我们重点介绍建立和维持随机AWC不对称性的分子机制。由于高度保守AWC不对称途径的组成部分,来自模型生物秀丽隐杆线虫的见解可能为了解人类大脑不对称如何发展提供了一个窗口。

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