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急性髓系白血病的代谢可塑性

Metabolic Plasticity of Acute Myeloid Leukemia.

机构信息

Department of Medicine 2, Hematology/Oncology, Goethe University, 60590 Frankfurt am Main, Germany.

German Cancer Consortium (DKTK) and DKFZ, 69120 Heidelberg, Germany.

出版信息

Cells. 2019 Jul 31;8(8):805. doi: 10.3390/cells8080805.

Abstract

Acute myeloid leukemia (AML) is one of the most common and life-threatening leukemias. A highly diverse and flexible metabolism contributes to the aggressiveness of the disease that is still difficult to treat. By using different sources of nutrients for energy and biomass supply, AML cells gain metabolic plasticity and rapidly outcompete normal hematopoietic cells. This review aims to decipher the diverse metabolic strategies and the underlying oncogenic and environmental changes that sustain continuous growth, mediate redox homeostasis and induce drug resistance in AML. We revisit Warburg's hypothesis and illustrate the role of glucose as a provider of cellular building blocks rather than as a supplier of the tricarboxylic acid (TCA) cycle for energy production. We discuss how the diversity of fuels for the TCA cycle, including glutamine and fatty acids, contributes to the metabolic plasticity of the disease and highlight the roles of amino acids and lipids in AML metabolism. Furthermore, we point out the potential of the different metabolic effectors to be used as novel therapeutic targets.

摘要

急性髓系白血病 (AML) 是最常见和最具威胁性的白血病之一。高度多样化和灵活的代谢有助于疾病的侵袭性,这仍然难以治疗。通过使用不同来源的营养物质来提供能量和生物量供应,AML 细胞获得了代谢可塑性,并迅速超过正常造血细胞。本综述旨在解析维持 AML 细胞持续生长、调节氧化还原平衡和诱导耐药性的不同代谢策略以及潜在的致癌和环境变化。我们重新审视了 Warburg 假说,并说明了葡萄糖作为细胞构建块的提供者,而不是三羧酸 (TCA) 循环能量产生的供体的作用。我们讨论了 TCA 循环燃料的多样性,包括谷氨酰胺和脂肪酸,如何有助于疾病的代谢可塑性,并强调了氨基酸和脂质在 AML 代谢中的作用。此外,我们指出了不同代谢效应物作为新型治疗靶点的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a691/6721808/b03eff86f7c5/cells-08-00805-g001.jpg

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