Peroxiredoxin 5 overexpression decreases oxidative stress and dopaminergic cell death mediated by paraquat

IF 3.9 4区 生物学 Q4 Biochemistry, Genetics and Molecular Biology Cells and Development Pub Date : 2023-09-01 DOI:10.1016/j.cdev.2023.203860
Ana Patricia Duarte-Jurado, Maria de Jesus Loera-Arias, Odila Saucedo-Cardenas, Roberto Montes de Oca-Luna, Humberto Rodriguez-Rocha, Aracely Garcia-Garcia
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引用次数: 2

Abstract

Peroxiredoxins (Prdxs) are thiol-dependent enzymes that scavenge peroxides. Previously, we found that Prdxs were hyperoxidized in a Parkinson's disease model induced by paraquat (PQ), which led to their inactivation, perpetuating reactive oxygen species (ROS) formation. Herein, we evaluated the redox state of the typical 2-Cys-Prx subgroup. We found that PQ induces ROS compartmentalization in different organelles, reflected by the 2-Cys-Prdx hyperoxidation pattern detected by redox eastern blotting. 2-Cys Prdxs are most vulnerable to hyperoxidation, while atypical 2-Cys Peroxiredoxin 5 (Prdx5) is resistant and is expressed in multiple organelles, such as mitochondria, peroxisomes, and cytoplasm. Therefore, we overexpressed human Prdx5 in the dopaminergic SHSY-5Y cell line using the adenoviral vector Ad-hPrdx5. Prdx5 overexpression was confirmed by western blotting and immunofluorescence (IF) and effectively decreased PQ-mediated mitochondrial and cytoplasmic ROS assessed with a mitochondrial superoxide indicator and DHE through IF or flow cytometry. Decreased ROS mediated by Prdx5 in the main subcellular compartments led to overall cell protection against PQ-induced cell death, which was demonstrated by flow cytometry using Annexin V labeling and 7-AAD. Therefore, Prdx5 is an attractive therapeutic target for PD, as its overexpression protects dopaminergic cells from ROS and death, which warrants further experimental animal studies for its subsequent application in clinical trials.

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过氧化氧还蛋白5过表达可降低百草枯介导的氧化应激和多巴胺能细胞死亡
过氧化物还原酶(Prdxs)是一种巯基依赖性酶,可清除过氧化物。此前,我们发现在百草枯(PQ)诱导的帕金森病模型中,Prdxs被过度氧化,这导致它们失活,使活性氧(ROS)的形成永久化。在此,我们评估了典型的2-Cys-Prx亚组的氧化还原状态。我们发现PQ在不同细胞器中诱导ROS区室化,通过氧化还原东方印迹检测到的2-Cys-Prdx超氧化模式反映了这一点。2-Cys-Prdxs最容易受到过氧化的影响,而非典型的2-Cys-Peroxiredoxin 5(Prdx5)具有抗性,并在多种细胞器中表达,如线粒体、过氧化物酶体和细胞质。因此,我们使用腺病毒载体Ad-hPrdx5在多巴胺能SHSY-5Y细胞系中过表达人Prdx5。Prdx5过表达通过蛋白质印迹和免疫荧光(IF)得到证实,并通过IF或流式细胞术有效降低了用线粒体超氧化物指示剂和DHE评估的PQ介导的线粒体和细胞质ROS。Prdx5介导的主要亚细胞区室中ROS的减少导致了对PQ诱导的细胞死亡的整体细胞保护,这通过使用膜联蛋白V标记和7-AAD的流式细胞术得到了证明。因此,Prdx5是PD的一个有吸引力的治疗靶点,因为它的过表达保护多巴胺能细胞免受ROS和死亡的影响,这就需要对其进行进一步的实验动物研究,以便随后在临床试验中应用。
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来源期刊
Cells and Development
Cells and Development Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
2.90
自引率
0.00%
发文量
33
审稿时长
41 days
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