LRRK2 Inhibition Mitigates the Neuroinflammation Caused by TLR2-Specific α-Synuclein and Alleviates
Dong-Hwan Ho1, Daleum Nam1, Mikyoung Seo2
1InAm Neuroscience Research Center, Wonkwang University, Sanbon-ro 321, Gunpo-si 15865, Gyeonggi-do, Korea.
Abstract:
Evidence suggests that crosstalk occurs between microglial leucine-rich repeat kinase 2 (LRRK2)-a regulator of neuroinflammation-and neuron-released α-synuclein (αSyn)-a promoter of microglial activation and neuroinflammatory responses-in neuroinflammation-mediated Parkinson's disease (PD) progression. Therefore, we examined whether LRRK2 inhibition reduces the responses of microglia to neuroinflammation caused by neuron-released αSyn. We examined the neuroinflammatory responses provoked by Toll-like receptor 2 (TLR2)-positive αSyn of neuronal cells using an LRRK2 inhibitor in the mouse glioma cells, rat primary microglia, and human microglia cell line; and the effects of LRRK2 inhibitor in the co-culture of ectopic αSyn-expressing human neuroblastoma cells and human microglia cells and in mouse models by injecting αSyn. We analyzed the association between LRRK2 activity and αSyn oligomer and TLR2 levels in the substantia nigra tissues of human patients with idiopathic PD (iPD). The TLR2-specific αSyn elevated LRRK2 activity and neuroinflammation, and the LRRK2 inhibitor ameliorated neuroinflammatory responses in various microglia cells, alleviated neuronal degeneration along with neuroinflammation in the co-culture, and blocked the further progression of locomotor failure and dopaminergic neuronal degeneration caused by TLR2-specific αSyn in mice. Furthermore, LRRK2 phosphorylation was increased in patients with iPD showing αSyn-specific high TLR2 level. These results suggest the application of LRRK2 inhibitors as a novel therapeutic approach against αSyn-mediated PD progression.
Insights
Inhibiting leucine-rich repeat kinase 2 (LRRK2) reduces microglial neuroinflammation triggered by alpha-synuclein (αSyn). This LRRK2 inhibition shows potential as a therapeutic strategy for Parkinson's disease (PD) progression.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Microglial leucine-rich repeat kinase 2 (LRRK2) and neuron-released alpha-synuclein (αSyn) interact in Parkinson's disease (PD) neuroinflammation.
- αSyn promotes microglial activation and neuroinflammatory responses, contributing to PD progression.
Purpose of the Study:
- To investigate if LRRK2 inhibition mitigates microglial responses to αSyn-induced neuroinflammation.
- To explore the therapeutic potential of LRRK2 inhibitors in αSyn-mediated PD.
Main Methods:
- Utilized LRRK2 inhibitor in various cell models (glioma, primary microglia, human microglia cell line) exposed to Toll-like receptor 2 (TLR2)-positive αSyn.
- Examined effects in co-cultures of neuroblastoma and microglia cells, and in mouse models injected with αSyn.
- Analyzed LRRK2 activity, αSyn oligomer, and TLR2 levels in human idiopathic PD (iPD) substantia nigra tissues.
Main Results:
- TLR2-specific αSyn increased LRRK2 activity and neuroinflammation.
- LRRK2 inhibition ameliorated neuroinflammatory responses in microglia, reduced neuronal degeneration in co-cultures, and prevented motor deficits and dopaminergic neuron loss in mice.
- Elevated LRRK2 phosphorylation correlated with high αSyn/TLR2 levels in iPD patients.
Conclusions:
- LRRK2 plays a critical role in mediating αSyn-induced neuroinflammation and PD progression.
- LRRK2 inhibitors demonstrate therapeutic potential for treating αSyn-mediated Parkinson's disease.
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