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γ-谷氨酰环转移酶作为一种新型的 HIF-1α 表达调控因子,触发了有氧糖酵解。

γ-Glutamylcyclotransferase, a novel regulator of HIF-1α expression, triggers aerobic glycolysis.

机构信息

Department of Clinical Oncology, Kyoto Pharmaceutical University, Misasagi-Nakauchicho 5, Yamashinaku, Kyoto, 607-8414, Japan.

Department of Drug Discovery Medicine, Kyoto Prefectural University of Medicine, Kawaramachi-Hirokoji, Kamigyo-ku, Kyoto, 602‑8566, Japan.

出版信息

Cancer Gene Ther. 2022 Jan;29(1):37-48. doi: 10.1038/s41417-020-00287-0. Epub 2021 Jan 5.

Abstract

Metabolic reprogramming leading to aerobic glycolysis, termed the "Warburg effect," is a critical property of cancer cells. However, the precise mechanisms underlying this phenomenon are not fully understood. A growing body of evidence indicates that γ-glutamylcyclotransferase (GGCT), an enzyme involved in glutathione homeostasis that is highly expressed in many types of cancer, represents a promising therapeutic target. In this study, we identified GGCT as a novel regulator of hypoxia-inducible factor-1α (HIF-1α), a transcription factor that plays a role in hypoxia adaptation promoting aerobic glycolysis. In multiple human cancer cell lines, depletion of GGCT downregulated HIF-1α at the mRNA and protein levels. Conversely, in NIH3T3 mouse fibroblasts, overexpression of GGCT upregulated HIF-1α under normoxia. Moreover, depletion of GGCT downregulated HIF-1α downstream target genes involved in glycolysis, whereas overexpression of GGCT upregulated those genes. Metabolomic analysis revealed that modulation of GGCT expression induced a metabolic switch from the citric acid cycle to glycolysis under normoxia. In addition, we found that GGCT regulates expression of HIF-1α protein via the AMPK-mTORC1-4E-BP1 pathway in PC3 cells. Thus GGCT regulates the expression of HIF-1α in cancer cells, causing a switch to glycolysis.

摘要

代谢重编程导致有氧糖酵解,即“Warburg 效应”,是癌细胞的一个关键特性。然而,这一现象的确切机制尚不完全清楚。越来越多的证据表明,γ-谷氨酰环转移酶(GGCT)是一种参与谷胱甘肽稳态的酶,在许多类型的癌症中高度表达,它是一个很有前途的治疗靶点。在这项研究中,我们发现 GGCT 是一种新型的缺氧诱导因子-1α(HIF-1α)调节剂,HIF-1α 是一种在缺氧适应中起作用的转录因子,促进有氧糖酵解。在多种人癌细胞系中,GGCT 的耗竭下调了 HIF-1α 的 mRNA 和蛋白水平。相反,在 NIH3T3 小鼠成纤维细胞中,GGCT 的过表达在常氧条件下上调了 HIF-1α。此外,GGCT 的耗竭下调了参与糖酵解的 HIF-1α 下游靶基因的表达,而 GGCT 的过表达则上调了这些基因。代谢组学分析显示,调节 GGCT 的表达可诱导常氧条件下柠檬酸循环向糖酵解的代谢转换。此外,我们发现 GGCT 通过 PC3 细胞中的 AMPK-mTORC1-4E-BP1 通路调节 HIF-1α 蛋白的表达。因此,GGCT 调节癌细胞中 HIF-1α 的表达,导致糖酵解的转换。

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