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Mst1/2-BNIP3 轴对于线粒体应激下的自噬诱导和神经元存活是必需的。

The Mst1/2-BNIP3 axis is required for mitophagy induction and neuronal viability under mitochondrial stress.

机构信息

Department of Biochemistry, College of Medicine, Dong-A University, Busan, Republic of Korea.

Department of Translational Biomedical Sciences, Graduate School of Dong-A University, Busan, Republic of Korea.

出版信息

Exp Mol Med. 2024 Mar;56(3):674-685. doi: 10.1038/s12276-024-01198-y. Epub 2024 Mar 5.

Abstract

Mitophagy induction upon mitochondrial stress is critical for maintaining mitochondrial homeostasis and cellular function. Here, we found that Mst1/2 (Stk3/4), key regulators of the Hippo pathway, are required for the induction of mitophagy under various mitochondrial stress conditions. Knockdown of Mst1/2 or pharmacological inhibition by XMU-MP-1 treatment led to impaired mitophagy induction upon CCCP and DFP treatment. Mechanistically, Mst1/2 induces mitophagy independently of the PINK1-Parkin pathway and the canonical Hippo pathway. Moreover, our results suggest the essential involvement of BNIP3 in Mst1/2-mediated mitophagy induction upon mitochondrial stress. Notably, Mst1/2 knockdown diminishes mitophagy induction, exacerbates mitochondrial dysfunction, and reduces cellular survival upon neurotoxic stress in both SH-SY5Y cells and Drosophila models. Conversely, Mst1 and Mst2 expression enhances mitophagy induction and cell survival. In addition, AAV-mediated Mst1 expression reduced the loss of TH-positive neurons, ameliorated behavioral deficits, and improved mitochondrial function in an MPTP-induced Parkinson's disease mouse model. Our findings reveal the Mst1/2-BNIP3 regulatory axis as a novel mediator of mitophagy induction under conditions of mitochondrial stress and suggest that Mst1/2 play a pivotal role in maintaining mitochondrial function and neuronal viability in response to neurotoxic treatment.

摘要

线粒体应激时的自噬诱导对于维持线粒体稳态和细胞功能至关重要。在这里,我们发现 Hippo 通路的关键调节因子 Mst1/2(Stk3/4)对于各种线粒体应激条件下的自噬诱导是必需的。Mst1/2 的敲低或 XMU-MP-1 的药理学抑制导致 CCCP 和 DFP 处理时自噬诱导受损。在机制上,Mst1/2 独立于 PINK1-Parkin 途径和经典 Hippo 途径诱导自噬。此外,我们的结果表明 BNIP3 在 Mst1/2 介导的线粒体应激时的自噬诱导中起重要作用。值得注意的是,Mst1/2 的敲低会减少自噬诱导,加剧线粒体功能障碍,并降低 SH-SY5Y 细胞和果蝇模型中神经毒性应激下的细胞存活率。相反,Mst1 和 Mst2 的表达增强了自噬诱导和细胞存活。此外,AAV 介导的 Mst1 表达减少了 MPTP 诱导的帕金森病小鼠模型中 TH 阳性神经元的丢失,改善了行为缺陷,并改善了线粒体功能。我们的研究结果揭示了 Mst1/2-BNIP3 调节轴作为线粒体应激条件下自噬诱导的新调节剂,并表明 Mst1/2 在应对神经毒性治疗时对于维持线粒体功能和神经元活力起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c32/10984967/f4abb48f756f/12276_2024_1198_Fig1_HTML.jpg

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