MLKL deficiency alleviates neuroinflammation and motor deficits in the α-synuclein transgenic mouse model of Parkinson’s disease

Author:

Geng Lu1,Gao Wenqing1,Hexige Saiyin1,Li Yuanyuan1,Zeng Yu2,Zhang Zhifei1,Li Xue2,Liu Zuolong1,Gao Qiang1,Jiang Ning1,Yu Xiaofei1,Chen Xiangjun1,Li Suhua3,Chen Lei2,Li Aiqun4,Chen Guoyuan5,Shen Yidong5,Tian Mei1,Zhang Zhuohua6,Li Jixi1ORCID

Affiliation:

1. Fudan University

2. Shanghai Jiaotong University: Shanghai Jiao Tong University

3. Duke Kunshan University

4. Levi Regenerative Medicine Technology

5. SIBCB: Chinese Academy of Sciences Center for Excellence in Molecular Cell Science

6. Xiangya Hospital Central South University

Abstract

Abstract Parkinson’s disease (PD), one of the most devastating neurodegenerative brain disorders, is characterized by the progressive loss of dopaminergic neurons in the substantia nigra (SN) and deposits of α-synuclein aggregates. Currently, pharmacological interventions for PD remain inadequate. The cell necroptosis executor protein MLKL (Mixed-lineage kinase domain-like) is involved in various diseases, including inflammatory bowel disease and neurodegenerative diseases; however, its precise role in PD remains unclear. Here, we investigated the neuroprotective role of MLKL inhibition or ablation against neuronal cell death induced by 6-OHDA and TNF-α. Using a mouse model (Tg-Mlkl−/−) generated by crossbreeding the SNCA A53T synuclein transgenic mice with MLKL knockout (KO)mice, we assessed the impact of MLKL deficiency on the progression of Parkinsonian traits. Our findings demonstrate that Tg-Mlkl−/− mice exhibited a significant improvement in motor symptoms and reduced phosphorylated α-synuclein expression compared to that in the classic A53T transgenic mice. Furthermore, MLKL deficiency alleviated tyrosine hydroxylase (TH)-positive neuron loss and attenuated neuroinflammation by inhibiting the activation of microglia and astrocytes. Single-cell RNA-seq (scRNA-seq) analysis of the SN of Tg-Mlkl−/ mice revealed a unique cell type-specific transcriptome profile, including downregulated prostaglandin D synthase (PTGDS) expression, indicating reduced microglial cells and dampened neuron death. Thus, MLKL represents a critical therapeutic target for reducing neuroinflammation and preventing motor deficits in PD.

Publisher

Research Square Platform LLC

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