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斑马鱼倦怠行为突变会破坏乙酰胆碱受体定位和运动轴突稳定性。

The zebrafish ennui behavioral mutation disrupts acetylcholine receptor localization and motor axon stability.

作者信息

Saint-Amant Louis, Sprague Shawn M, Hirata Hiromi, Li Qin, Cui Wilson W, Zhou Weibin, Poudou Olivier, Hume Richard I, Kuwada John Y

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Michigan, MI, USA.

出版信息

Dev Neurobiol. 2008 Jan;68(1):45-61. doi: 10.1002/dneu.20569.

Abstract

The zebrafish ennui mutation was identified from a mutagenesis screen for defects in early behavior. Homozygous ennui embryos swam more slowly than wild-type siblings but normal swimming recovered during larval stages and homozygous mutants survived until adulthood. Electrophysiological recordings from motoneurons and muscles suggested that the motor output of the CNS following mechanosensory stimulation was normal in ennui, but the synaptic currents at the neuromuscular junction were significantly reduced. Analysis of acetylcholine receptors (AChRs) in ennui muscles showed a marked reduction in the size of synaptic clusters and their aberrant localization at the myotome segment borders of fast twitch muscle. Prepatterned, nerve-independent AChR clusters appeared normal in mutant embryos and dispersed upon outgrowth of motor axons onto the muscles. Genetic mosaic analysis showed that ennui is required cell autonomously in muscle fibers for normal synaptic localization of AChRs. Furthermore, exogenous agrin failed to induce AChR aggregation, suggesting that ennui is crucial for agrin function. Finally, motor axons branched more extensively in ennui fast twitch muscles especially in the region of the myotome borders. These results suggest that ennui is important for nerve-dependent AChR clustering and the stability of axon growth.

摘要

斑马鱼倦怠突变体是通过对早期行为缺陷的诱变筛选鉴定出来的。纯合的倦怠胚胎游动速度比野生型同胞慢,但在幼体阶段恢复了正常游动,并且纯合突变体存活至成年。运动神经元和肌肉的电生理记录表明,在倦怠突变体中,机械感觉刺激后中枢神经系统的运动输出正常,但神经肌肉接头处的突触电流显著降低。对倦怠肌肉中乙酰胆碱受体(AChRs)的分析显示,突触簇的大小显著减小,并且它们在快肌肌节段边界处的定位异常。预先形成的、不依赖神经的AChR簇在突变胚胎中看起来正常,并在运动轴突生长到肌肉上时分散。遗传镶嵌分析表明,在肌肉纤维中,倦怠对于AChRs的正常突触定位是细胞自主必需的。此外,外源性聚集蛋白不能诱导AChR聚集,这表明倦怠对于聚集蛋白的功能至关重要。最后,运动轴突在倦怠快肌中分支更广泛,尤其是在肌节边界区域。这些结果表明,倦怠对于依赖神经的AChR聚集和轴突生长的稳定性很重要。

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