Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Diabetes Research Center, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Aging (Albany NY). 2020 Nov 24;12(24):24604-24622. doi: 10.18632/aging.104196.
We report a comparative analysis of the effects of immune activation in the fly nervous system using genetic activation models to target NF-κB within Toll versus Imd pathways. Genetic gain-of-function models for either pathway pan-neuronally as well as in discrete subsets of neural cells including neuroendocrine insulin-producing cells (IPCs) or neuroblasts reduce fly lifespan, however, these phenotypes in IPCs and neuroblasts are stronger with Toll activation than Imd activation. Of note, while aging is influenced more by Toll/NF-κB activation in IPCs during adulthood, neuroblasts influence aging more substantially during development. The study then focused on Toll/NF-κB inhibition, revealing that IPCs or neuroblasts are important for the effects of lifespan and healthspan extension but in a life stage-dependent manner while some of these effects display sexual dimorphism. Importantly, co-inhibition of Toll/NF-κB pathway in IPCs and neuroblasts increased fly lifespan greater than either cell population, suggesting that independent mechanisms might exist. Toll/NF-κB inhibition in IPCs was also sufficient to enhance survival under various fatal stresses, supporting the additional benefits to fly healthspan. In conclusion, IPCs and neuroblasts are important for NF-κB for controlling lifespan.
我们报告了使用遗传激活模型在果蝇神经系统中靶向 Toll 与 Imd 通路中的 NF-κB,对免疫激活的影响进行的比较分析。这两种途径的遗传功能获得模型均可在神经元中广泛表达,也可在包括神经内分泌胰岛素分泌细胞(IPCs)或神经母细胞在内的离散神经细胞亚群中表达,从而降低果蝇的寿命,但在 IPC 和神经母细胞中, Toll 激活的表型比 Imd 激活的表型更强。值得注意的是,虽然在成年期,IPC 中的 Toll/NF-κB 激活对衰老的影响更大,但在发育过程中,神经母细胞对衰老的影响更大。随后,研究集中在 Toll/NF-κB 抑制上,结果表明,IPC 或神经母细胞对于延长寿命和健康寿命的影响是重要的,但具有依赖于生命阶段的方式,而其中一些影响表现出性别二态性。重要的是,IPC 和神经母细胞中 Toll/NF-κB 途径的共同抑制作用比任何一个细胞群都能更显著地延长果蝇的寿命,这表明可能存在独立的机制。IPC 中的 Toll/NF-κB 抑制也足以增强果蝇在各种致命应激下的存活率,从而提高了果蝇的健康寿命。总之,IPC 和神经母细胞对于控制寿命的 NF-κB 是重要的。