靶向TXN1通过P38 MAPK通路诱导胶质瘤细胞G2M期阻滞和凋亡

IF 3.3 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lu Zhou, Hongsheng Liang, Chenyi Nie, Jiaxin Zhou, Kuo Li, Xi Zhang, Jiahang Xu, Renjie Hu, Aili Gao
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引用次数: 0

摘要

神经胶质瘤是最常见、侵袭性最强的成人原发性脑肿瘤。此外,由于胶质瘤细胞固有的抗凋亡特性,胶质瘤患者放化疗后的预后不利。因此,胶质瘤的治疗仍然是一个挑战。我们的目的是确定TXN1对胶质瘤细胞抗凋亡能力和增殖作用的分子机制。TXN1的表达与胶质瘤患者之间的关系最初通过生物信息学方法进行预测,然后通过临床胶质瘤组织进行验证。结果表明,TXN1的表达随着胶质瘤恶性程度的增加而增加,导致患者预后较差。然后用慢病毒处理胶质瘤细胞,使其成为抑制TXN1表达的稳定细胞系。采用MTT、流式细胞术、免疫荧光、western blot和qRT-PCR分析胶质瘤细胞增殖、细胞周期、凋亡及P38 MAPK信号通路表达的变化。免疫组化方法检测裸鼠移植瘤组织中相关蛋白的表达水平。TXN1表达降低使胶质瘤细胞周期进入G2/M期,细胞凋亡率升高,线粒体膜损伤增加。此外,这与P38 MAPK通路的活性相关。TXN1表达降低可激活P38 MAPK通路,导致胶质瘤细胞周期阻滞,诱导线粒体凋亡。本研究首次揭示抑制TXN1可通过激活ASK1/P38 MAPK轴破坏胶质瘤的凋亡抵抗机制,导致胶质瘤细胞G2/M期阻滞,抑制胶质瘤细胞增殖,促进恶性胶质瘤细胞凋亡。TXN1抑制剂联合放化疗有望显著改善胶质瘤患者的临床预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeting TXN1 Induces G2M Phase Arrest and Apoptosis of Glioma Cells Through P38 MAPK Pathway.

Glioma is the most common and aggressive primary adult brain tumor. Furthermore, the prognosis for glioma patients following chemoradiotherapy is unfavourable due to the inherent anti-apoptotic characteristics of glioma cells. Thus, the treatment of gliomas remains a challenge. Our aim was to define the molecular mechanisms underlying the effects of TXN1 on the anti-apoptotic ability and proliferation of glioma cells. The relationship between TXN1 expression and glioma patients was initially predicted using bioinformatics methods and then verified through clinical glioma tissue Results showed that the expression of TXN1 increases with the malignant degree of glioma, leading to a worse prognosis for patients.Then glioma cells were treated with lentivirus to be stable cell lines with suppressed TXN1 expression. MTT, flow cytometry, immunofluorescence, western blot and qRT-PCR were used to analyse changes in glioma proliferation, cell cycle, apoptosis and the expressioin of the P38 MAPK signaling pathway. Moreover,the expression levels of related proteins in the transplanted tumor tissues of nude mice were investigated by immunohistochemistry. Reducing TXN1 expression caused glioma cell cycle in G2/M phase, increased cell apoptosis rate and mitochondrial membrane damage. Furthermore, this was correlated with activity of the P38 MAPK pathway. Reduction of TXN1 expression can activate the P38 MAPK pathway to cause glioma cell cycle arrest and induce mitochondrial apoptosis. This study revealed for the first time that inhibition of TXN1 can destroy the apoptotic resistance mechanism of glioma by activating ASK1/P38 MAPK axis, resulting in G2/M phase arrest of glioma cells, inhibiting the proliferation of glioma cells, and promoting apoptosis of glioma cells in malignant gliomas. Combining TXN1 inhibitors with radiotherapy and chemotherapy is expected to significantly improve the clinical prognosis of glioma patients.

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来源期刊
Applied Biochemistry and Biotechnology
Applied Biochemistry and Biotechnology 工程技术-生化与分子生物学
CiteScore
5.70
自引率
6.70%
发文量
460
审稿时长
5.3 months
期刊介绍: This journal is devoted to publishing the highest quality innovative papers in the fields of biochemistry and biotechnology. The typical focus of the journal is to report applications of novel scientific and technological breakthroughs, as well as technological subjects that are still in the proof-of-concept stage. Applied Biochemistry and Biotechnology provides a forum for case studies and practical concepts of biotechnology, utilization, including controls, statistical data analysis, problem descriptions unique to a particular application, and bioprocess economic analyses. The journal publishes reviews deemed of interest to readers, as well as book reviews, meeting and symposia notices, and news items relating to biotechnology in both the industrial and academic communities. In addition, Applied Biochemistry and Biotechnology often publishes lists of patents and publications of special interest to readers.
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