A zebrafish screen reveals Renin-angiotensin system inhibitors as neuroprotective via mitochondrial restoration in dopamine neurons

斑马鱼筛选显示肾素-血管紧张素系统抑制剂可通过多巴胺神经元中的线粒体修复发挥神经保护作用

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作者:Gha-Hyun J Kim, Han Mo, Harrison Liu, Zhihao Wu, Steven Chen, Jiashun Zheng, Xiang Zhao, Daryl Nucum, James Shortland, Longping Peng, Mannuel Elepano, Benjamin Tang, Steven Olson, Nick Paras, Hao Li, Adam R Renslo, Michelle R Arkin, Bo Huang, Bingwei Lu, Marina Sirota, Su Guo

Abstract

Parkinson's disease (PD) is a common neurodegenerative disorder without effective disease-modifying therapeutics. Here, we establish a chemogenetic dopamine (DA) neuron ablation model in larval zebrafish with mitochondrial dysfunction and robustness suitable for high-content screening. We use this system to conduct an in vivo DA neuron imaging-based chemical screen and identify the Renin-Angiotensin-Aldosterone System (RAAS) inhibitors as significantly neuroprotective. Knockdown of the angiotensin receptor 1 (agtr1) in DA neurons reveals a cell-autonomous mechanism of neuroprotection. DA neuron-specific RNA-seq identifies mitochondrial pathway gene expression that is significantly restored by RAAS inhibitor treatment. The neuroprotective effect of RAAS inhibitors is further observed in a zebrafish Gaucher disease model and Drosophila pink1-deficient PD model. Finally, examination of clinical data reveals a significant effect of RAAS inhibitors in delaying PD progression. Our findings reveal the therapeutic potential and mechanisms of targeting the RAAS pathway for neuroprotection and demonstrate a salient approach that bridges basic science to translational medicine.

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