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内质网应激传感器对芹菜素诱导凋亡的影响。

Impact of Endoplasmic Reticulum Stress Sensors on Pectolinarin Induced Apoptosis.

作者信息

Song Ji-Hye, Kwon Kisang, Kwon O-Yu, Lee Eun-Ryeong, Kim Seung-Whan, Kang Kyung-Hee

机构信息

Departments of Anatomy and Cell Biology, College of Medicine, Chungnam National University, Daejeon, South Korea.

Department of Biomedical Laboratory Science, College of Health and Welfare, Kyungwoon University, Gumi, South Korea.

出版信息

Front Public Health. 2020 Sep 9;8:478. doi: 10.3389/fpubh.2020.00478. eCollection 2020.

Abstract

Pectolinarin, [5,7-Dihydroxy 4',6-dimethoxyflavone 7-rutinoside, 7-[[6-O-(6-Deoxy-α-L-mannopyranosyl)-β-D-glucopyranosyl] oxy]-5-hydroxy-6-methoxy-2-(4-ethoxyphenyl)-4H-1-benzopyran-4-one], has been stated one of the major compounds in (Maxim.) Makino. It is characterized by biological functions of hepatoprotective, anti-inflammatory and antiobesity activities. In this research, it was explained that pectolinarin causes apoptosis in PC12 cells conducted by DNA fragmentation and formation on apoptotic bodies through the activation of ER stress sensors (ATF6 fragmentation and eIF2α phosphorylation). The result of treating the PC12 cells with 50 μM pectolinarin for 24 h has come to increase ATF6 mRNA expression up to 1.6 times, PERK expression up to 1.7 times and IRE1 expression up to 1.4 times, respectively, compared to those of the control. ATF6 fragmentation by pectolinarin treatment was increased about 2 times compared with its control, and phosphorylation of eIF2α was increased 2.5 times. The results proposed that the perception of the molecular mechanisms underlying pectolinarin-caused apoptosis may be useful in new natural medicinal products and health supplements for the apoptosis-related diseases.

摘要

橙皮苷,[5,7 - 二羟基 - 4',6 - 二甲氧基黄酮7 - 芸香糖苷,7 - [[6 - O - (6 - 脱氧 - α - L - 甘露吡喃糖基) - β - D - 吡喃葡萄糖基]氧基] - 5 - 羟基 - 6 - 甲氧基 - 2 - (4 - 乙氧基苯基) - 4H - 1 - 苯并吡喃 - 4 - 酮],被认为是怀牛膝(Maxim.)Makino中的主要化合物之一。它具有保肝、抗炎和抗肥胖等生物学功能。在本研究中,研究表明橙皮苷通过激活内质网应激传感器(ATF6裂解和eIF2α磷酸化),导致PC12细胞发生DNA片段化并形成凋亡小体,从而引发细胞凋亡。用50 μM橙皮苷处理PC12细胞24小时的结果显示,与对照组相比,ATF6 mRNA表达分别增加至1.6倍,PERK表达增加至1.7倍,IRE1表达增加至1.4倍。橙皮苷处理导致的ATF6裂解比对照组增加约2倍,eIF2α磷酸化增加2.5倍。这些结果表明,了解橙皮苷诱导细胞凋亡的分子机制,可能有助于开发与细胞凋亡相关疾病的新型天然药物和健康补充剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5907/7509041/6f0c4bcbe078/fpubh-08-00478-g0001.jpg

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