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非编码 RNA 在癌症葡萄糖代谢重编程中的作用。

Non-coding RNAs in the reprogramming of glucose metabolism in cancer.

机构信息

Department of Morphology, Surgery and Experimental Medicine, University of Ferrara, Ferrara, Italy.

Department of Medical, Oral and Biotechnological Sciences, G. d'Annunzio University, Chieti, Italy; Unit of General Pathology, Aging Research Center and Translational Medicine (CeSI-MeT), G. d'Annunzio University, Chieti, Italy.

出版信息

Cancer Lett. 2018 Apr 10;419:167-174. doi: 10.1016/j.canlet.2018.01.048. Epub 2018 Jan 31.


DOI:10.1016/j.canlet.2018.01.048
PMID:29366802
Abstract

Proliferating cancer cells reprogram their metabolic circuitry to thrive in an environment deficient in nutrients and oxygen. Cancer cells exhibit a higher rate of glucose metabolism than normal somatic cells, which is achieved by switching from oxidative phosphorylation to aerobic glycolysis to meet the energy and metabolites demands of tumour progression. This phenomenon, which is known as the Warburg effect, has generated renewed interest in the process of glucose metabolism reprogramming in cancer cells. Several regulatory pathways along with glycolytic enzymes are responsible for the emergence of glycolytic dependence. Non-coding (nc)RNAs are a class of functional RNA molecules that are not translated into proteins but regulate target gene expression. NcRNAs have been shown to be involved in various biological processes, including glucose metabolism. In this review, we describe the regulatory role of ncRNAs-specifically, microRNAs and long ncRNAs-in the glycolytic switch and propose that ncRNA-based therapeutics can be used to inhibit the process of glucose metabolism reprogramming in cancer cells.

摘要

增殖的癌细胞重新编程其代谢通路,以在营养和氧气缺乏的环境中茁壮成长。癌细胞的葡萄糖代谢率高于正常体细胞,这是通过从氧化磷酸化切换到有氧糖酵解来满足肿瘤进展的能量和代谢物需求来实现的。这种现象被称为瓦博格效应(Warburg effect),它重新激发了人们对癌细胞中葡萄糖代谢重编程过程的兴趣。几个调节途径以及糖酵解酶负责糖酵解依赖性的出现。非编码 (nc)RNAs 是一类不翻译成蛋白质但调节靶基因表达的功能性 RNA 分子。已经证明 ncRNAs 参与了包括葡萄糖代谢在内的各种生物学过程。在这篇综述中,我们描述了 ncRNAs(特别是 microRNAs 和长 ncRNAs)在糖酵解开关中的调节作用,并提出基于 ncRNA 的疗法可用于抑制癌细胞中葡萄糖代谢重编程的过程。

相似文献

[1]
Non-coding RNAs in the reprogramming of glucose metabolism in cancer.

Cancer Lett. 2018-1-31

[2]
Warburg meets non-coding RNAs: the emerging role of ncRNA in regulating the glucose metabolism of cancer cells.

Tumour Biol. 2015-1

[3]
The pivotal role of MicroRNAs in glucose metabolism in cancer.

Pathol Res Pract. 2021-1

[4]
Non-coding RNAs derailed: The many influences on the fatty acid reprogramming of cancer.

Life Sci. 2019-5-29

[5]
The emerging regulatory roles of non-coding RNAs associated with glucose metabolism in breast cancer.

Semin Cancer Biol. 2023-10

[6]
Non-coding RNAs: Key regulators of aerobic glycolysis in breast cancer.

Life Sci. 2020-3-21

[7]
Emerging roles of non-coding RNAs in the metabolic reprogramming of tumor-associated macrophages.

Immunol Lett. 2021-4

[8]
Regulation of aerobic glycolysis by long non-coding RNAs in cancer.

Biochem Biophys Res Commun. 2016-10-7

[9]
Therapeutic targeting of non-coding RNAs in cancer.

Biochem J. 2017-12-14

[10]
Regulation of Glycolysis by Non-coding RNAs in Cancer: Switching on the Warburg Effect.

Mol Ther Oncolytics. 2020-10-10

引用本文的文献

[1]
Reprogramming of glucose metabolism in pancreatic cancer: mechanisms, implications, and therapeutic perspectives.

Front Immunol. 2025-6-24

[2]
The emerging role of glycolysis and immune evasion in ovarian cancer.

Cancer Cell Int. 2025-3-5

[3]
Practical immunomodulatory landscape of glioblastoma multiforme (GBM) therapy.

J Egypt Natl Canc Inst. 2024-10-28

[4]
miR-373-3p promotes aerobic glycolysis in colon cancer cells by targeting MFN2.

Acta Biochim Biophys Sin (Shanghai). 2024-6-27

[5]
The regulation of hypoxia-related lncRNAs in hepatocellular carcinoma.

Discov Oncol. 2024-5-7

[6]
Hsa_circ_0052611 and mir-767-5p guide the warburg effect, migration, and invasion of BRCA cells through modulating SCAI.

J Bioenerg Biomembr. 2023-10

[7]
Signaling pathways in cancer metabolism: mechanisms and therapeutic targets.

Signal Transduct Target Ther. 2023-5-10

[8]
LncRNA modulates Hippo-YAP signaling to reprogram iron metabolism.

Nat Commun. 2023-4-20

[9]
LncRNA GLTC targets LDHA for succinylation and enzymatic activity to promote progression and radioiodine resistance in papillary thyroid cancer.

Cell Death Differ. 2023-6

[10]
Metabolic reprogramming in cancer: Mechanisms and therapeutics.

MedComm (2020). 2023-3-27

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