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

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

eLife (2021-09-23)
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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Monoclonal Anti-β-Actin antibody produced in mouse, clone AC-15, ascites fluid