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Ginsenoside Rh2 induces DNA damage and autophagy in vestibular schwannoma is dependent of LAMP2 transcriptional suppression

机译:人参皂甙RH2诱导DNA损伤和前庭施瓦南马的自噬取决于灯2转录抑制

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Ginsenoside Rh2 (G-Rh2), a component of ginseng extraction, exerted anti-tumor property in the occurrence and progress of human tumors. Vestibular schwannoma (VS) is a kind of benign tumor. Extraction of traditional Chinese herb has been applied to treat VS as adjuvant therapy. Nevertheless, G-Rh2-related molecular mechanisms in VS progress are not yet clear. The purpose of current study is to unveil the function and potential molecular mechanism of Rh2 in VS cellular functions. At first, the viability and apoptosis of VS cells treated with different concentrations of Rh2 were assessed. Autophagy and DNA damage response can be induced by multiple drugs. Here, we observed the changes of autophagy and DNA damage in Rh2-induced VS cells. Based on the experimental data, treatment with Rh2 contributed to cell apoptosis by inducing DNA damage and suppressing DNA damage. LAMP2 (lysosomal associated membrane protein 2), an autophagy inducer, was downregulated in Rh2-treated VS cells. Through mechanism study, we determined that Rh2 led to the transcriptional inactivation of LAMP2 by downregulating its transcription activator NR2F2 (nuclear receptor subfamily 2 group F member 2). In addition, NR2F2 overexpression recovered the role of Rh2 in cell functions, which was further rescued by the silence of LAMP2. Collectively, our study unveiled a novel NR2F2/LAMP2 axis in Rh2-mediated VS cells, which potentially contributes to the therapy for VS. (C) 2019 Elsevier Inc. All rights reserved.
机译:人参皂苷Rh2(G-RH2)是人参萃取的组分,施加抗肿瘤性质在人肿瘤的发生和进展中。前庭施瓦马瘤(VS)是一种良性肿瘤。促进中药草药已被应用于治疗vs作为辅助治疗。然而,VS进展中的G-RH2相关的分子机制尚不清楚。目前研究的目的是揭示rH2在VS细胞功能中的功能和潜在分子机制。首先,评估用不同浓度RH2处理的VS细胞的活力和凋亡。可以通过多种药物诱导自噬和DNA损伤反应。在这里,我们观察了RH2诱导的VS细胞中自噬和DNA损伤的变化。基于实验数据,通过诱导DNA损伤并抑制DNA损伤,用RH2治疗导致细胞凋亡。灯2(溶酶体相关膜蛋白2)是自噬诱导剂,在RH2处理的VS细胞中下调。通过机理研究,通过下调其转录激活剂NR2F2(核受体亚家族2组F成员2)确定RH2导致灯2的转录失活。此外,NR2F2过表达回收了RH2在细胞功能中的作用,这将通过灯2的沉默进一步救出。统称,我们的研究在RH2介导的VS细胞中揭开了一种新的NR2F2 / LAMP2轴,这可能导致对VS的治疗。 (c)2019 Elsevier Inc.保留所有权利。

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