Paglione Maria, Restivo Leonardo, Zakhia Sarah, Llobet Rosell Arnau, Terenzio Marco, Neukomm Lukas J
Department of Fundamental Neurosciences, University of Lausanne, 1005, Lausanne, Switzerland.
Lemanic Neuroscience Doctoral School (LNDS), Lausanne, Switzerland.
EMBO Rep. 2025 Jan;26(1):61-83. doi: 10.1038/s44319-024-00301-8. Epub 2024 Oct 31.
After injury, severed axons separated from their somas activate programmed axon degeneration, a conserved pathway to initiate their degeneration within a day. Conversely, severed projections deficient in programmed axon degeneration remain morphologically preserved with functional synapses for weeks to months after axotomy. How this synaptic function is sustained remains currently unknown. Here, we show that dNmnat overexpression attenuates programmed axon degeneration in distinct neuronal populations. Severed projections remain morphologically preserved for weeks. When evoked, they elicit a postsynaptic behavior, a readout for preserved synaptic function. We used ribosomal pulldown to isolate the translatome from these projections 1 week after axotomy. Translatome candidates of enriched biological classes identified by transcriptional profiling are validated in a screen using a novel automated system to detect evoked antennal grooming as a proxy for preserved synaptic function. RNAi-mediated knockdown reveals that transcripts of the mTORC1 pathway, a mediator of protein synthesis, and of candidate genes involved in protein ubiquitination and Ca homeostasis are required for preserved synaptic function. Our translatome dataset also uncovers several uncharacterized Drosophila genes associated with human disease. It may offer insights into novel avenues for therapeutic treatments.
损伤后,与胞体分离的切断轴突会激活程序性轴突退化,这是一种保守的途径,可在一天内启动轴突退化。相反,缺乏程序性轴突退化的切断投射在轴突切断后数周甚至数月内,其形态仍保持完整,且具有功能性突触。目前尚不清楚这种突触功能是如何维持的。在这里,我们表明dNmnat的过表达会减弱不同神经元群体中的程序性轴突退化。切断的投射在数周内保持形态完整。当受到刺激时,它们会引发突触后行为,这是突触功能保持的一种表现。我们在轴突切断后1周,使用核糖体下拉法从这些投射中分离出翻译组。通过转录谱分析确定的富集生物类别的翻译组候选物,在一个新的自动化系统筛选中得到验证,该系统通过检测诱发的触角梳理行为来代表突触功能的保持。RNA干扰介导的敲低实验表明,蛋白质合成的介质mTORC1途径以及参与蛋白质泛素化和钙稳态的候选基因的转录本,对于突触功能的保持是必需的。我们的翻译组数据集还发现了几个与人类疾病相关的未表征的果蝇基因。它可能为治疗方法的新途径提供见解。