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葡萄糖-6-磷酸脱氢酶通过增加抗氧化剂生成和激活Wnt/β-连环蛋白通路,促进多发性骨髓瘤细胞增殖并导致地塞米松耐药。

G6PD promotes cell proliferation and dexamethasone resistance in multiple myeloma via increasing anti-oxidant production and activating Wnt/β-catenin pathway.

作者信息

Li Rui, Ke Mengying, Qi Mingming, Han Zhenru, Cao Yuhao, Deng Zhendong, Qian Jinjun, Yang Ye, Gu Chunyan

机构信息

Nanjing Hospital of Chinese Medicine Affiliated to Nanjing University of Chinese Medicine, Nanjing, China.

School of Medicine and Holistic Integrative Medicine, Nanjing University of Chinese Medicine, 138 Xianlin Road, Nanjing, China.

出版信息

Exp Hematol Oncol. 2022 Oct 21;11(1):77. doi: 10.1186/s40164-022-00326-6.

Abstract

BACKGROUND

Glucose-6-phosphate dehydrogenase (G6PD) as the rate-limiting enzyme in the pentose phosphate pathway (PPP) is well-established as an aberrantly expressed protein in numerous clinical diseases; however, its role in cancer, specifically in multiple myeloma (MM) remains elusive.

METHODS

In this study, serum metabolites in 70 normal people and 70 newly diagnosed MM patients were analyzed using untargeted metabolomics and the results were verified using ELISA. The survival analysis of multiple clinical datasets was performed to identify a potential target gene in MM. The oncogenic role of G6PD was investigated using lentivirus-based overexpression or knockdown of G6PD using RNAi or an inhibitor in vitro, and in a xenograft mouse model in vivo. The mechanisms of induced Dexamethasone (Dexa)-resistance of G6PD were further explored using the above established MM cell lines in vitro.

RESULTS

Based on the screening of potential genes, PPP was shown to be involved in the occurrence of MM, which was evidenced by the differential expression of serum metabolites of G6P and Dehydroepiandrosterone sulfate (DHEAS, the more stable sulfate ester form of an endogenously uncompetitive G6PD inhibitor known as DHEA). Elevated G6PD promoted MM cell proliferation. Mechanistically, high G6PD expression enhanced enzymatic generation of the antioxidant NADPH via the PPP and decreased the production of reactive oxygen species (ROS), thus inducing the proliferation and Dexa resistance in MM cells. Furthermore, canonical Wnt/β-catenin signaling also participated in regulating G6PD-induced drug resistance and cellular redox levels of ROS. Intriguingly, DHEA treatment could enhance the sensitivity of MM cells to Dexa primarily through augmenting cellular oxidative stress.

CONCLUSIONS

Our data demonstrate that G6PD enhances the generation of the enzymatic anti-oxidant NADPH and decreases ROS generation, thereby promoting resistance to Dexa-induced apoptosis via the enzymatic PPP and non-enzymatic Wnt/β-catenin signaling pathway in MM. Targeting G6PD to harness cellular redox may serve as a promising novel strategy for the management of MM.

摘要

背景

葡萄糖-6-磷酸脱氢酶(G6PD)作为磷酸戊糖途径(PPP)中的限速酶,在众多临床疾病中是一种异常表达的蛋白质,然而,其在癌症,特别是多发性骨髓瘤(MM)中的作用仍不清楚。

方法

在本研究中,使用非靶向代谢组学分析了70名正常人和70名新诊断的MM患者的血清代谢物,并使用酶联免疫吸附测定(ELISA)对结果进行了验证。对多个临床数据集进行生存分析,以确定MM中的潜在靶基因。使用基于慢病毒的过表达或通过RNA干扰或抑制剂在体外以及在体内异种移植小鼠模型中敲低G6PD来研究G6PD的致癌作用。使用上述建立的MM细胞系在体外进一步探索G6PD诱导地塞米松(Dexa)耐药的机制。

结果

基于对潜在基因的筛选,PPP被证明参与MM的发生,这通过G6P和硫酸脱氢表雄酮(DHEAS,一种内源性非竞争性G6PD抑制剂DHEA的更稳定硫酸酯形式)的血清代谢物差异表达得到证实。G6PD升高促进MM细胞增殖。机制上,高G6PD表达通过PPP增强抗氧化剂NADPH的酶促生成并减少活性氧(ROS)的产生,从而诱导MM细胞增殖和对Dexa的耐药性。此外,经典的Wnt/β-连环蛋白信号通路也参与调节G6PD诱导的耐药性和细胞氧化还原水平的ROS。有趣的是,DHEA治疗主要通过增加细胞氧化应激来增强MM细胞对Dexa的敏感性。

结论

我们的数据表明,G6PD增强酶促抗氧化剂NADPH的生成并减少ROS生成,从而通过酶促PPP和非酶促Wnt/β-连环蛋白信号通路促进对Dexa诱导的细胞凋亡的耐药性。靶向G6PD以控制细胞氧化还原可能是一种有前景的MM治疗新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8524/9587560/70b92465ddc4/40164_2022_326_Fig1_HTML.jpg

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