Danos Joseph A, Addemir Merve, McGettigan Lily, Summers Daniel W
Department of Biology, University of Iowa, Iowa City, IA 52242 USA.
Iowa Neuroscience Institute, University of Iowa, Iowa City, IA 52242 USA.
bioRxiv. 2025 Jan 1:2024.12.31.630780. doi: 10.1101/2024.12.31.630780.
Neurotrophic factors are critical for establishing functional connectivity in the nervous system and sustaining neuronal survival through adulthood. As the first neurotrophic factor purified, nerve growth factor (NGF) is extensively studied for its prolific role in axon outgrowth, pruning, and survival. Applying NGF to diseased neuronal tissue is an exciting therapeutic option and understanding how NGF regulates local axon susceptibility to pathological degeneration is critical for exploiting its full potential. Our study identifies surprising connections between NGF signaling and proteostasis of axon maintenance factors. NGF deprivation increases Nmnat2 and Stmn2 protein levels in axon segments with a corresponding delay in Wallerian degeneration. Conversely, acute NGF stimulation reduces local abundance of these axon maintenance factors and accelerates Wallerian degeneration. Pharmacological studies implicate phospholipase C as the key effector in TrkA activation, which drives degradation of palmitoylated Stmn2. While seemingly opposed to neuroprotective activities well-documented for NGF, downregulating Nmnat2 and Stmn2 favors axonal outgrowth over transient hyper-susceptibility to Sarm1-dependent degeneration. This new facet of NGF biology has important implications for axonal remodeling during development and sustained integrity through adulthood.
神经营养因子对于在神经系统中建立功能连接以及在成年期维持神经元存活至关重要。作为首个被纯化的神经营养因子,神经生长因子(NGF)因其在轴突生长、修剪和存活中的多方面作用而得到广泛研究。将NGF应用于患病的神经元组织是一个令人兴奋的治疗选择,而了解NGF如何调节局部轴突对病理性退变的易感性对于充分发挥其潜力至关重要。我们的研究发现了NGF信号传导与轴突维持因子的蛋白质稳态之间令人惊讶的联系。NGF剥夺会增加轴突节段中Nmnat2和Stmn2的蛋白质水平,同时沃勒变性相应延迟。相反,急性NGF刺激会降低这些轴突维持因子的局部丰度并加速沃勒变性。药理学研究表明磷脂酶C是TrkA激活的关键效应物,它驱动棕榈酰化的Stmn2降解。虽然这似乎与NGF已充分记录的神经保护活性相反,但下调Nmnat2和Stmn2有利于轴突生长而非对Sarm1依赖性退变的短暂超敏感性。NGF生物学的这一新方面对于发育过程中的轴突重塑以及成年期的持续完整性具有重要意义。