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GADD45B的下调导致细胞氧化磷酸化向糖酵解的转变,并促进膀胱癌的进展。

The down-regulation of GADD45B leads to a conversion of cellular oxidative phosphorylation to glycolysis and promotes the progression of bladder cancer.

作者信息

Wang Kai-Yun, Wang Ke-Jie, Shen Li-Liang, Wang Xu-Hui

机构信息

Department of Urology, the Affiliated People's Hospital of Ningbo University, Ningbo, Zhejiang, China.

出版信息

Heliyon. 2024 Mar 7;10(6):e27427. doi: 10.1016/j.heliyon.2024.e27427. eCollection 2024 Mar 30.

Abstract

BACKGROUND

The predominant feature of cancer cells during the process of carcinogenesis is the inclination towards glycolytic metabolism rather than mitochondrial oxidative phosphorylation. Nevertheless, there is a scarcity of research investigating the correlation between bladder cancer and mitochondrial energy metabolism.

METHODS

A qPCR array comprising 90 genes associated with mitochondrial oxidative phosphorylation was employed to discern metabolic disparities between three sets of bladder cancer tissue and adjacent normal tissue. Wound healing and transwell assays were utilized to assess cell migration and invasion capabilities, respectively. Colony formation assays were conducted to ascertain the tumorigenic potential of the cells. The proliferative capacity of the cells was examined through CCK-8 assays. Additionally, nude mouse models were established to evaluate the impact of bladder tumor cells on proliferation. The Seahorse XFe96 Analyzer was utilized to quantify mitochondrial oxidative phosphorylation, while the levels of glucose-6-phosphate and pyruvate were assessed to evaluate glycolysis.

RESULTS

Examination of qPCR array data demonstrated a noteworthy inhibition of mitochondrial oxidative phosphorylation in bladder cancer tissue, as evidenced by the down-regulation of a majority of genes associated with mitochondrial energy metabolism. Notably, may potentially exert a significant influence on bladder cancer development, warranting further investigation. The down-regulation of GADD45B in bladder cancer cells resulted in impaired mitochondrial respiration and elevated levels of glycolysis, thereby enhancing cell migration and invasion. Conversely, up-regulation of GADD45B had the opposite effect. Furthermore, over-expression of GADD45B inhibited tumor proliferation and tumorigenesis in both and settings.

CONCLUSION

These findings from our study indicate that the down-regulation of GADD45B promotes the shift of cell mitochondrial oxidative phosphorylation towards glycolysis, thereby facilitating the progression of bladder cancer.

摘要

背景

癌细胞在致癌过程中的主要特征是倾向于糖酵解代谢而非线粒体氧化磷酸化。然而,关于膀胱癌与线粒体能量代谢之间相关性的研究却很匮乏。

方法

采用包含90个与线粒体氧化磷酸化相关基因的qPCR芯片,以识别三组膀胱癌组织和相邻正常组织之间的代谢差异。分别利用伤口愈合试验和Transwell试验评估细胞迁移和侵袭能力。进行集落形成试验以确定细胞的致瘤潜力。通过CCK-8试验检测细胞的增殖能力。此外,建立裸鼠模型以评估膀胱肿瘤细胞对增殖的影响。利用Seahorse XFe96分析仪定量线粒体氧化磷酸化,同时评估6-磷酸葡萄糖和丙酮酸水平以评估糖酵解。

结果

对qPCR芯片数据的检查表明,膀胱癌组织中线粒体氧化磷酸化受到显著抑制,这表现为大多数与线粒体能量代谢相关基因的下调。值得注意的是, 可能对膀胱癌的发展产生重大影响,值得进一步研究。膀胱癌细胞中GADD45B的下调导致线粒体呼吸受损和糖酵解水平升高,从而增强细胞迁移和侵袭。相反,GADD45B的上调则产生相反的效果。此外,GADD45B的过表达在 和 环境中均抑制肿瘤增殖和肿瘤发生。

结论

我们研究的这些结果表明,GADD45B的下调促进细胞线粒体氧化磷酸化向糖酵解的转变,从而促进膀胱癌的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b53/10945183/8a92c1886f7f/gr1.jpg

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