Park7 deletion leads to sex-specific transcriptome changes involving NRF2-CYP1B1 axis in mouse midbrain astrocytes

IF 6.7 1区 医学 Q1 NEUROSCIENCES NPJ Parkinson's Disease Pub Date : 2025-01-04 DOI:10.1038/s41531-024-00851-7
Sergio Helgueta, Tony Heurtaux, Alessia Sciortino, Yujuan Gui, Jochen Ohnmacht, Pauline Mencke, Ibrahim Boussaad, Rashi Halder, Pierre Garcia, Rejko Krüger, Michel Mittelbronn, Manuel Buttini, Thomas Sauter, Lasse Sinkkonen
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Abstract

Loss-of-function mutations in PARK7, encoding for DJ-1, can lead to early onset Parkinson’s disease (PD). In mice, Park7 deletion leads to dopaminergic deficits during aging, and increased sensitivity to oxidative stress. However, the severity of the reported phenotypes varies. To understand the early molecular changes upon loss of DJ-1, we performed transcriptomic profiling of midbrain sections from young mice. While at 3 months the transcriptomes of both male and female mice were unchanged compared to their wildtype littermates, an extensive deregulation was observed in 8 month-old males. The affected genes are involved in processes like focal adhesion, extracellular matrix interaction, and epithelial-to-mesenchymal transition (EMT), and enriched for primary target genes of NRF2. Consistently, the antioxidant response was altered specifically in the midbrain of male DJ-1 deficient mice. Many of the misregulated genes are known target genes of estrogen and retinoic acid signaling and show sex-specific expression in wildtype mice. Depletion of DJ-1 or NRF2 in male primary astrocytes recapitulated many of the in vivo changes, including downregulation of CYP1B1, an enzyme involved in estrogen and retinoic acid metabolism. Interestingly, knock-down of CYP1B1 led to gene expression changes in focal adhesion and EMT in primary male astrocytes. Finally, male iPSC-derived astrocytes with loss of function mutation in the PARK7 gene also showed changes in the EMT pathway and NRF2 target genes. Taken together, our data indicate that loss of Park7 leads to sex-specific gene expression changes through astrocytic alterations in the NRF2-CYP1B1 axis, suggesting higher sensitivity of males to loss of DJ-1.

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Park7缺失导致小鼠中脑星形胶质细胞中涉及NRF2-CYP1B1轴的性别特异性转录组改变
编码DJ-1的PARK7的功能缺失突变可导致早发性帕金森病(PD)。在小鼠中,Park7缺失导致衰老过程中的多巴胺能缺陷,并增加对氧化应激的敏感性。然而,报告的表型的严重程度各不相同。为了了解DJ-1缺失后的早期分子变化,我们对年轻小鼠的中脑切片进行了转录组学分析。在3个月时,雄性和雌性小鼠的转录组与野生型小鼠相比没有变化,但在8个月大的雄性小鼠中观察到广泛的解除管制。受影响的基因参与了局灶黏附、细胞外基质相互作用和上皮-间质转化(EMT)等过程,并且在NRF2的主要靶基因中富集。与此一致的是,雄性DJ-1缺陷小鼠中脑的抗氧化反应发生了特异性改变。许多失调基因是已知的雌激素和维甲酸信号传导的靶基因,并在野生型小鼠中表现出性别特异性表达。雄性原代星形胶质细胞中DJ-1或NRF2的缺失再现了许多体内变化,包括CYP1B1的下调,CYP1B1是一种参与雌激素和维甲酸代谢的酶。有趣的是,CYP1B1的敲除导致原代雄性星形胶质细胞局灶黏附和EMT的基因表达改变。最后,PARK7基因功能缺失突变的雄性ipsc来源的星形胶质细胞也出现了EMT通路和NRF2靶基因的变化。综上所述,我们的数据表明,Park7的缺失通过NRF2-CYP1B1轴的星形细胞改变导致了性别特异性基因表达的改变,这表明雄性对DJ-1缺失的敏感性更高。
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来源期刊
NPJ Parkinson's Disease
NPJ Parkinson's Disease Medicine-Neurology (clinical)
CiteScore
9.80
自引率
5.70%
发文量
156
审稿时长
11 weeks
期刊介绍: npj Parkinson's Disease is a comprehensive open access journal that covers a wide range of research areas related to Parkinson's disease. It publishes original studies in basic science, translational research, and clinical investigations. The journal is dedicated to advancing our understanding of Parkinson's disease by exploring various aspects such as anatomy, etiology, genetics, cellular and molecular physiology, neurophysiology, epidemiology, and therapeutic development. By providing free and immediate access to the scientific and Parkinson's disease community, npj Parkinson's Disease promotes collaboration and knowledge sharing among researchers and healthcare professionals.
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