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Notum通过对无翅跨突触信号的细胞外调节来协调突触发育。

Notum coordinates synapse development via extracellular regulation of Wingless trans-synaptic signaling.

作者信息

Kopke Danielle L, Lima Sofia C, Alexandre Cyrille, Broadie Kendal

机构信息

Department of Biological Sciences, Kennedy Center for Research on Human Development, Vanderbilt University, Nashville, TN 37235, USA.

Francis Crick Institute, 1 Midland Road, London, NW1 1AT, UK.

出版信息

Development. 2017 Oct 1;144(19):3499-3510. doi: 10.1242/dev.148130. Epub 2017 Aug 31.

Abstract

Synaptogenesis requires orchestrated communication between pre- and postsynaptic cells via coordinated trans-synaptic signaling across the extracellular synaptomatrix. The first Wnt signaling ligand discovered, Wingless (Wg; Wnt1 in mammals), plays crucial roles in synaptic development, regulating synapse architecture as well as functional differentiation. Here, we investigate synaptogenic functions of the secreted extracellular deacylase Notum, which restricts Wg signaling by cleaving an essential palmitoleate moiety. At the glutamatergic neuromuscular junction (NMJ) synapse, we find that Notum secreted from the postsynaptic muscle acts to strongly modulate synapse growth, structural architecture, ultrastructural development and functional differentiation. In null flies, we find upregulated extracellular Wg ligand and nuclear trans-synaptic signal transduction, as well as downstream misregulation of both pre- and postsynaptic molecular assembly. Structural, functional and molecular synaptogenic defects are all phenocopied by Wg overexpression, suggesting that Notum acts solely by inhibiting Wg trans-synaptic signaling. Moreover, these synaptic development phenotypes are suppressed by genetically correcting Wg levels in null mutants, indicating that Notum normally functions to coordinate synaptic structural and functional differentiation via negative regulation of Wg trans-synaptic signaling in the extracellular synaptomatrix.

摘要

突触形成需要通过跨细胞外突触基质的协调反式突触信号传导,在突触前和突触后细胞之间进行精心编排的通信。第一个被发现的Wnt信号配体无翅型(Wg;在哺乳动物中为Wnt1)在突触发育中起着关键作用,调节突触结构以及功能分化。在这里,我们研究了分泌型细胞外去酰基酶Notum的突触形成功能,它通过切割一个必需的棕榈油酸部分来限制Wg信号传导。在谷氨酸能神经肌肉接头(NMJ)突触处,我们发现突触后肌肉分泌的Notum强烈调节突触生长、结构架构、超微结构发育和功能分化。在Notum缺失的果蝇中,我们发现细胞外Wg配体上调以及核反式突触信号转导,以及突触前和突触后分子组装的下游失调。Wg过表达模拟了结构、功能和分子突触形成缺陷,这表明Notum仅通过抑制Wg反式突触信号传导发挥作用。此外,通过基因校正Notum缺失突变体中的Wg水平,这些突触发育表型得到了抑制,这表明Notum通常通过在细胞外突触基质中对Wg反式突触信号传导进行负调控来协调突触结构和功能分化。

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