首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Synaptic exocytosis and nervous system development impaired in Caenorhabditis elegans unc-13 mutants.
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Synaptic exocytosis and nervous system development impaired in Caenorhabditis elegans unc-13 mutants.

机译:秀丽隐杆线虫unc-13突变体的突触胞吐作用和神经系统发育受损。

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C. elegans mutants defective in unc-13 exhibited severe behavioral abnormalities including paralyzed locomotion and slow pharyngeal pumping and irregular defecation cycle. Consistent with the phenotypes, the mutants accumulated abnormally high levels of the neurotransmitter acetylcholine and were resistant to acetylcholinesterase inhibitors. The unc-13 gene was expressed in most, if not all, neurons when analyzed by using chimeric constructs consisting of the unc-13 promoter and green fluorescence protein or beta-galactosidase reporter gene. While Ca(2+)-regulated acetylcholine release is lacking, the mutants were still able to release acetylcholine in vivo and in vitro at similar levels to that mediated by the regulated mechanism. Double mutants defective in both unc-13 and other genes involved in synaptic transmission showed the Unc-13 phenotype, rather than other mutant phenotypes, in terms of locomotion as well as of acetylcholine accumulation. Furthermore, electron microscopic reconstruction of the mutant nervous system uncovered that a majority of neurons developed and connected as those in the wild type except for subtle abnormalities including inappropriate connections through gap junctions and morphological alterations of neurons.These results demonstrate that the unc-13 gene product plays an essential role at a late stage in Ca(2+)-regulated synaptic exocytosis. Neurotransmitters released through the Ca(2+)-regulated mechanism are required for, but do not play major roles in the nervous system development. The large amount of Ca(2+)-independent neurotransmitter release observed in the unc-13 mutants suggests that there may be a distinct mechanism from evoked or spontaneous release in neurotransmission.
机译:unc-13中有缺陷的秀丽隐杆线虫突变体表现出严重的行为异常,包括运动麻痹,咽部抽气缓慢和排便不规律。与表型一致,这些突变体积累了异常高水平的神经递质乙酰胆碱,并且对乙酰胆碱酯酶抑制剂具有抗性。当使用由unc-13启动子和绿色荧光蛋白或β-半乳糖苷酶报道基因组成的嵌合构建体进行分析时,unc-13基因在大多数(如果不是全部)神经元中表达。虽然缺少Ca(2+)调节的乙酰胆碱释放,但突变体仍然能够在体内和体外以与调节机制介导的相似水平释放乙酰胆碱。在unc-13和其他与突触传递有关的基因中都具有缺陷的双突变体在运动以及乙酰胆碱积累方面表现出Unc-13表型,而不是其他突变表型。此外,通过电子显微镜对突变神经系统进行的重建发现,除了细微的异常(包括通过间隙连接和神经元形态改变的不适当连接)以外,大多数神经元都像野生型一样发育并连接在一起。这些结果表明unc-13基因产品在Ca(2+)调节的突触胞吐作用的晚期发挥重要作用。通过Ca(2+)调节机制释放的神经递质是必需的,但在神经系统发育中不发挥主要作用。在unc-13突变体中观察到大量的Ca(2+)独立的神经递质释放表明,在神经传递中可能存在与诱发或自发释放不同的机制。

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