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lin-14调控秀丽隐杆线虫中突触重塑的时间。

lin-14 regulates the timing of synaptic remodelling in Caenorhabditis elegans.

作者信息

Hallam S J, Jin Y

机构信息

Department of Biology, Sinsheimer Laboratories, University of California, Santa Cruz, 95064, USA.

出版信息

Nature. 1998 Sep 3;395(6697):78-82. doi: 10.1038/25757.

Abstract

In the nematode Caenorhabditis elegans six GABAergic motor neurons, known as DDs, remodel their patterns of synaptic connectivity during larval development. DD remodelling involves a complete reversal of the direction of information flow within nerve processes without marked changes in process morphology. We used a marker localized in vivo to DD presynaptic zones to analyse how the timing of DD remodelling is controlled. In wild-type animals, DDs remodel their synaptic outputs within a 3-5-hour period at the end of the first larval stage. We show that the heterochronic gene lin-14, which controls the timing of stage-specific cell lineages, regulates the timing of DD synaptic output remodelling. In lin-14 loss-of-function mutants, DDs remodel precociously. The degree of precocious remodelling is correlated with the level of lin-14 activity. Expression of lin-14(+) in the DDs of lin-14-null mutants rescues the precocious remodelling, indicating that lin-14 can act cell-autonomously. Consistent with this hypothesis, LIN-14 protein levels decrease in the DDs before remodelling. Our observations reveal a role of heterochronic genes in non-dividing cells, and provide an example of cell-autonomous respecification of neuronal connectivity.

摘要

在线虫秀丽隐杆线虫中,六个γ-氨基丁酸能运动神经元(称为DDs)在幼虫发育过程中重塑其突触连接模式。DD重塑涉及神经突起内信息流方向的完全逆转,而突起形态没有明显变化。我们使用一种在体内定位于DD突触前区的标记物来分析DD重塑的时间是如何控制的。在野生型动物中,DDs在第一幼虫阶段末期的3-5小时内重塑其突触输出。我们发现,控制阶段特异性细胞谱系时间的异时性基因lin-14调节DD突触输出重塑的时间。在lin-14功能丧失突变体中,DDs过早重塑。过早重塑的程度与lin-14活性水平相关。在lin-14缺失突变体的DDs中表达lin-14(+)可挽救过早重塑,表明lin-14可自主发挥作用。与该假设一致,重塑前DDs中的LIN-14蛋白水平降低。我们的观察揭示了异时性基因在非分裂细胞中的作用,并提供了神经元连接性细胞自主重新指定的一个例子。

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