WWOX 通过抑制 Hippo 信号通路抑制食管癌发展的分子机制

IF 2.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Zihan Chen, Jingyu Sun, Lili Zhang, Yanglin Sun, Qingqing Ni, Hongkun Zhu, Miao Hui, Longzhen Zhang, Qiang Wang
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引用次数: 0

摘要

随着联合手术治疗以及放疗和化疗的出现,食管癌患者的生存率有所提高,但总体 5 年生存率仍然很低。因此,迫切需要进一步研究食管癌的发病机制,并开发有效的预防、诊断和治疗方法。我们首先利用 GeneCards 和 DisGeNET 数据库确定了食管癌相关基因 WWOX(含 WW 结构域的氧化还原酶)。随后,我们采用 RT-qPCR(逆转录定量 PCR)和 WB(western blot)技术研究了 WWOX 在 HEEC(人食管内皮细胞)和各种 ESCC(食管鳞状细胞癌)细胞系中的差异表达。我们还通过 CCK8(细胞计数试剂盒-8)和克隆形成、Transwell 试验和流式细胞术进一步评估了细胞增殖、迁移和凋亡的变化。此外,我们还通过 RT-qPCR 和 WB 研究了与 Hippo 信号通路(YAP/TEAD)相关的蛋白质表达变化。最后,为了进一步阐明 WWOX 在 ESCC 中的调控机制,我们在过表达 WWOX 的 ESCC 细胞中进行了外源 YAP 挽救实验,以研究细胞凋亡和增殖的变化。结果表明,WWOX 在 ESCC 中的表达明显下调。过表达 WWOX 后,ESCC 细胞的增殖和迁移减少,而凋亡增加。此外,YAP 和 TEAD 的表达也有所降低。然而,YAP 的持续过表达削弱了 WWOX 对 ESCC 细胞恶性程度的抑制作用。总之,WWOX 可抑制 ESCC 的增殖和迁移,并通过抑制 Hippo 信号通路促进细胞凋亡。这些发现凸显了 WWOX 作为食管癌诊断和治疗新靶点的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Mechanism of WWOX Inhibiting the Development of Esophageal Cancer by Inhibiting Hippo Signaling Pathway.

Molecular Mechanism of WWOX Inhibiting the Development of Esophageal Cancer by Inhibiting Hippo Signaling Pathway.

With the emergence of combined surgical treatments, complemented by radiotherapy and chemotherapy, survival rates for esophageal cancer patients have improved, but the overall 5-year survival rate remains low. Therefore, there is an urgent need for further research into the pathogenesis of esophageal cancer and the development of effective prevention, diagnosis, and treatment methods. We initially utilized the GeneCards and DisGeNET databases to identify the esophageal cancer-associated gene WWOX (WW domain containing oxidoreductase). Subsequently, we employed RT-qPCR (Reverse transcription-quantitative PCR) and WB (western blot) to investigate the differential expression of WWOX in HEEC (human esophageal endotheliocytes) and various ESCC (esophageal squamous cell carcinoma) cell lines. We further evaluated alterations in cell proliferation, migration and apoptosis via CCK8 (cell counting kit-8) and clonal formation, Transwell assays and flow cytometry. Additionally, we investigated changes in protein expressions related to the Hippo signaling pathway (YAP/TEAD) through RT-qPCR and WB. Lastly, to further elucidate the regulatory mechanism of WWOX in ESCC, we performed exogenous YAP rescue experiments in ESCC cells with WWOX overexpression to investigate the alterations in apoptosis and proliferation. Results indicated that the expression of WWOX in ESCC was significantly downregulated. Subsequently, upon overexpression of WWOX, ESCC cell proliferation and migration decreased, while apoptosis increased. Additionally, the expression of YAP and TEAD were reduced. However, the sustained overexpression of YAP attenuated the inhibitory effects of WWOX on ESCC cell malignancy. In conclusion, WWOX exerts inhibitory effects on the proliferation and migration of ESCC and promotes apoptosis by suppressing the Hippo signaling pathway. These findings highlight the potential of WWOX as a novel target for the diagnosis and treatment of esophageal cancer.

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来源期刊
Biochemical Genetics
Biochemical Genetics 生物-生化与分子生物学
CiteScore
3.90
自引率
0.00%
发文量
133
审稿时长
4.8 months
期刊介绍: Biochemical Genetics welcomes original manuscripts that address and test clear scientific hypotheses, are directed to a broad scientific audience, and clearly contribute to the advancement of the field through the use of sound sampling or experimental design, reliable analytical methodologies and robust statistical analyses. Although studies focusing on particular regions and target organisms are welcome, it is not the journal’s goal to publish essentially descriptive studies that provide results with narrow applicability, or are based on very small samples or pseudoreplication. Rather, Biochemical Genetics welcomes review articles that go beyond summarizing previous publications and create added value through the systematic analysis and critique of the current state of knowledge or by conducting meta-analyses. Methodological articles are also within the scope of Biological Genetics, particularly when new laboratory techniques or computational approaches are fully described and thoroughly compared with the existing benchmark methods. Biochemical Genetics welcomes articles on the following topics: Genomics; Proteomics; Population genetics; Phylogenetics; Metagenomics; Microbial genetics; Genetics and evolution of wild and cultivated plants; Animal genetics and evolution; Human genetics and evolution; Genetic disorders; Genetic markers of diseases; Gene technology and therapy; Experimental and analytical methods; Statistical and computational methods.
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