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线粒体 CISD1 中的铁硫簇丢失介导 PINK1 功能丧失表型。

Iron-sulfur cluster loss in mitochondrial CISD1 mediates PINK1 loss-of-function phenotypes.

机构信息

University Medical Center of the Johannes Gutenberg-University Mainz, Institute for Molecular Medicine, Mainz, Germany.

Institute for Occupational, Social and Environmental Medicine, RWTH Aachen University, Aachen, Germany.

出版信息

Elife. 2024 Aug 19;13:e97027. doi: 10.7554/eLife.97027.

Abstract

Parkinson's disease (PD) is characterized by the progressive loss of dopaminergic neurons in the substantia nigra of the midbrain. Familial cases of PD are often caused by mutations of PTEN-induced kinase 1 (PINK1) and the ubiquitin ligase Parkin, both pivotal in maintaining mitochondrial quality control. CISD1, a homodimeric mitochondrial iron-sulfur-binding protein, is a major target of Parkin-mediated ubiquitination. We here discovered a heightened propensity of CISD1 to form dimers in Pink1 mutant flies and in dopaminergic neurons from PINK1 mutation patients. The dimer consists of two monomers that are covalently linked by a disulfide bridge. In this conformation CISD1 cannot coordinate the iron-sulfur cofactor. Overexpressing Cisd, the ortholog of CISD1, and a mutant Cisd incapable of binding the iron-sulfur cluster in reduced climbing ability and lifespan. This was more pronounced with mutant Cisd and aggravated in Pink1 mutant flies. Complete loss of Cisd, in contrast, rescued all detrimental effects of Pink1 mutation on climbing ability, wing posture, dopamine levels, lifespan, and mitochondrial ultrastructure. Our results suggest that Cisd, probably iron-depleted Cisd, operates downstream of Pink1 shedding light on PD pathophysiology and implicating CISD1 as a potential therapeutic target.

摘要

帕金森病(PD)的特征是中脑黑质多巴胺能神经元进行性丧失。PD 的家族病例通常由 PTEN 诱导的激酶 1(PINK1)和泛素连接酶 Parkin 的突变引起,这两者在维持线粒体质量控制中都起着关键作用。CISD1 是一种同源二聚体线粒体铁硫结合蛋白,是 Parkin 介导的泛素化的主要靶标。我们在这里发现,Pink1 突变果蝇和 PINK1 突变患者的多巴胺能神经元中 CISD1 形成二聚体的趋势增强。二聚体由两个通过二硫键共价连接的单体组成。在这种构象中,CISD1 不能协调铁硫辅因子。过表达 CISD1 的同源物 Cisd 及其不能结合铁硫簇的突变体 Cisd 会降低果蝇的攀爬能力和寿命。在 Pink1 突变果蝇中,这种情况更为明显。相比之下,完全缺失 Cisd 则挽救了 Pink1 突变对攀爬能力、翅膀姿势、多巴胺水平、寿命和线粒体超微结构的所有不利影响。我们的研究结果表明,Cisd(可能是铁耗竭的 Cisd)可能在 Pink1 发挥作用的下游起作用,这为 PD 的病理生理学提供了新的认识,并暗示 CISD1 可能是一个潜在的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee67/11383524/b9357bf4a17d/elife-97027-fig1.jpg

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