饥饿状态下通过PINK1/Parkin通路的活性氧对人牙周膜细胞自噬的调控

Q3 Medicine 华西口腔医学杂志 Pub Date : 2022-12-01 DOI:10.7518/hxkq.2022.06.004
Zhibo Fan, Ke Jin, Shenghong Li, Jie Xu, Xiaomei Xu
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引用次数: 0

摘要

目的:探讨饥饿条件下人牙周韧带细胞(hPDLCs)线粒体自噬在活性氧(ROS)和PINK1/Parkin通路介导下的具体机制。方法:从正常牙周组织中分离培养hpdlc。Earle's平衡盐溶液(EBSS)用于模拟饥饿环境,从而刺激hPDLCs线粒体自噬。采用n -乙酰- l-半胱氨酸(NAC)抑制ROS的产生,探讨ROS在hPDLC线粒体自噬中的作用。利用环孢素A抑制PINK1/Parkin通路,研究ROS和PINK1/Parkin通路在饥饿条件下hPDLCs活化中的作用。流式细胞术检测线粒体膜电位,采用JC-1线粒体膜电位检测试剂盒。透射电镜观察了线粒体的形态结构和线粒体自噬体的形成。用红染色和绿染色观察线粒体和溶酶体的定位。采用DCFH-DA ROS荧光探针检测ROS的形成强度。实时定量聚合酶链反应(RT-qPCR)检测线粒体自噬基因Tomm20和Timm23及PINK1/Parkin通路的表达水平。Western blot检测线粒体自噬蛋白(Tomm20、Timm23)和PINK1/Parkin蛋白的表达水平。结果:EBSS饥饿30min诱导hPDLCs线粒体自噬激活最强,ROS表达增加,线粒体自噬相关基因(Tomm20和Timm23)表达下调(ppppppppppppppppppp)。结论:饥饿条件下ROS主要通过PINK1/Parkin通路增强hPDLCs线粒体自噬。
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Regulation of reactive oxygen species on the mitophagy of human periodontal ligament cells through the PINK1/Parkin pathway under starvation.

Objectives: This study aimed to explore the specific mechanism, mediated by the reactive oxygen species (ROS) and PINK1/Parkin pathway, of the mitochondrial autophagy of human periodontal ligament cells (hPDLCs) under starvation conditions.

Methods: hPDLCs were isolated and cultured from normal periodontal tissues. Earle's balanced salt solution (EBSS) was used to simulated a starvation environment and thus stimulate hPDLCs mitochondrial autophagy. N-Acetyl-L-cysteine (NAC) was used to inhibit ROS production to explore the role of ROS in hPDLC mitochondrial autophagy. Cyclosporin A was used to inhibit the PINK1/Parkin pathway to study the role of ROS and the PINK1/Parkin pathway in hPDLCs activation under starvation. The mitochondrial membrane potential was detected by flow cytometry with a JC-1 mitochondrial membrane potential detection kit. The morphological structure of mitochondria and the formation of mitochondrial autophagosome were observed by transmission electron microscopy. Mito tracker red cmxros and lyso tracker green staining were used to observe the localization of mitochondria and lysosomes. The formation intensity of ROS was detected with a DCFH-DA ROS fluorescent probe. The expression levels of mitochondrial autophagy genes (Tomm20 and Timm23) and the PINK1/Parkin pathway were detected by real-time quantitative polymerase chain reaction (RT-qPCR). The expression levels of mitochondrial autophagy proteins (Tomm20 and Timm23) and PINK1/Parkin protein were detected by Western blot.

Results: EBSS starvation for 30 min induced the strongest activation of hPDLCs mitochondrial autophagy, increased the expression of ROS, downregulated the expression of mitochondrial autophagy-related genes (Tomm20 and Timm23) (P<0.001), and upregulated the PINK1/Parkin pathway (P<0.001). After NACinhibited ROS production, mitochondrial autophagy was also inhibited. Meanwhile, the expression of Tomm20 and Timm23 was upregulated (P<0.001 and P<0.05), and the expression of the PINK1/parkin pathway (P<0.001 and P<0.05) was down regulated. When cyclosporin A inhibited the expression of the PINK1/Parkin pathway (P<0.05 and P<0.05), it reversed the mitochondrial autophagy of hPDLCs (P<0.001 and P<0.01) and also upregulated the expression of Tomm20 and Timm23 (P<0.001 and P<0.01).

Conclusions: ROS enhanced the mitochondrial autophagy of hPDLCs primarily through the PINK1/Parkin pathway under starvation conditions.

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来源期刊
华西口腔医学杂志
华西口腔医学杂志 Medicine-Medicine (all)
CiteScore
0.80
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0.00%
发文量
6397
期刊介绍: West China Journal of Stomatology (WCJS, pISSN 1000-1182, eISSN 2618-0456, CN 51-1169/R), published bimonthly, is a peer-reviewed Open Access journal, hosted by Sichuan university and Ministry of Education of the People's Republic of China. WCJS was established in 1983 and indexed in Medline/Pubmed, SCOPUS, EBSCO, Chemical Abstract(CA), CNKI, WANFANG Data, etc.
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